Demag ZKKE standard double-girder overhead …...Demag ZKKE standard double-girder overhead...

36
Demag ZKKE standard double-girder overhead travelling crane with EZDR double-rail crab Dimension catalogue 180405 EN 203 561 44 714 IS 112

Transcript of Demag ZKKE standard double-girder overhead …...Demag ZKKE standard double-girder overhead...

Page 1: Demag ZKKE standard double-girder overhead …...Demag ZKKE standard double-girder overhead travelling crane with EZDR double-rail crab Dimension catalogue 180405 EN 203 561 44 714

Demag ZKKE standard double-girderoverhead travelling cranewith EZDR double-rail crabDimension catalogue

180405 EN 203 561 44 714 IS 112

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The steel superstructure is specified to DIN 15018, hoisting class H2, loading groupB3 for indoor operations (other classifications on request). The crane girder and theend carriages, of welded box-section design, are connected by high-tensile HVscrews. The perfectly reproducible crane geometry (precondition for good travelcharacteristics) is achieved by machining of the connecting surfaces to engineeringtolerances, exact measurement and precise adjustment in the plant.

All design and production procedures as well as the component parts are subjectedto a permanent and comprehensive quality control to DIN ISO 9001.

Description

Crane girders

20356001.eps

20356002.eps 20356003.eps

20356004.eps

Standard crane girder designs

Design 1

for existing building clearance dimensions with limiteddimension X and dimension U>0

Design 2

Raised U ≤ 150

Design 3

Raised U ≥ 150

Design 4

Special crane girder designs

For further information, please refer to the fold out page

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The end carriage consists of the welded box structure, the driven wheel block withgeared motor and the non-driven wheel block. The travel wheel is made of wear-resistant spheroidal graphite cast iron (minimum tensile strength = 700 N/mm²). Thedesign features include high durability due to roller bearings which are lubricated forlife in the wheel bearing, track gauge changes by means of spacer elements anddrive arrangements optionally to the right or left.

Documentation: 203 379 44 DFW-L-Z end carriages

Travel wheel tread egairracdneZ-L-WFD mmnisnoisnemiD

eziS darbxam ihcsbxam

061 56 05

002 56 05

052 07 55

20356005.eps

Virtually maintenance-free single drives drive one travel wheel on each side of thecrane.

The integrated flywheel mass of the cylindrical rotor motor ensures smooth startingof the crane and the special motor winding allows a high number of starts andstops. The disk brake integrated in the motor is spring-actuated and features elec-tro-magnetic release. It is controlled independently of the motor and causes noaxial movement of the rotor shaft or forces on the bearings.

Long travel speeds: Vkr= 10/40 m/min (pole-changing motor)

Vkr= 60 m/min (infinitely variable)

(other speeds on request)

Documentation: 203 351 44 Travel unit components

203 356 44 Geared travel motors

Compact double-rail crabs type EZ with Demag DR 5 and 10 rope hoist.

Cross travel speeds: Vka= 1,5 – 30 m/min (infinitely variable)

by means of cylindrical rotor motorswith frequency inverter

Documentation: 203 648 44 EZDR 5, 10-Pro

Crane end carriages

Long travel drives

Double-rail crab

bschi

brad

min

.30

ød

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Transmission of power and control commands from the electrical equipment enclo-sure of the crane to the crab is via a trailing cable system featuring highly flexibleflat cables with KBK 25 (KBK 25 profile girder section).

A protective earth conductor is always installed. In accordance with the VDE regu-lations, a crane switch is provided.

All motions of the crane are controlled via an integrated CAN BUS system. Thecrane is controlled from the ground optionally by means of:

• Demag Line Control pendants which can travel independently of the crab posi-tion or are fixed on the crab,

• Demag Radio Control wireless radio control systems.

Crane controls

Power supply to the crab

After a thorough pre-treatment (degree of purity Sa2 to DIN 55928), the steel partsare given a paint finish of synthetic resin-based paint (semi-matt golden yellow; min.coat thickness 60 µm).

Crab 2-colour power-coated in azure blue and silver grey (RAL 5009 andRAL 7001; coat thickness 80 µm).

Travel drives in azure blue (RAL 5009).

Corrosion protection

20356018.eps

Mobile control

Forwards

Reverse

Left Right

Crab power supply, control

Mobile control

Crab power supply, control

ZKKE with EZDR, no crane platform

ZKKE with EZDR, with crane platform

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Demag ZKKE standard double-girder overhead travelling craneCrane girders: Box-girder; design 1End carriage: DFW-L-Z_ _ _ /_ _ _ _/SCrab: 1 x EZDR

20356008.eps

DFW-L-Z 160 / 2500 / S

Side connection

Wheel base ekt

Travel wheel diameter d

Demag end carriage type Z

Type designation

EZDR 10 - 8 4/1 FEM 3m

Rope reeving

SWL in t

Range 5; 10

Double-rail crab withDemag rope hoist type DR

X1

b g

U

Y

Ian 2Ian 1

Lkr

100

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All dimensions in mm (LKR in m).For further information, refer to the fold out page.All structural dimensions, approach dimensions and information on the crane runway dimensions are based on the standard design 1 presented in this catalogue.Check for any deviations. Comply with the instructions on the fold out page.

20356009.eps

b

g

X1

Y

Ian 2Ian 1

Lkr

100

U

ZKKE without crane platform SWL 3,2 tCrane girders: Box-girder; design 1End carriage: DFW-L-Z_ _ _ /_ _ _ _/SCrab: 1x EZDR 5 - 3,2 4/1 FEM 4m

Hook path: 10 or 6 m; lifting speed: 9/1,5 m/min or 1 – 12,5 m/min infinitely variable

Cross travel speed 1,5 – 30 m/min infinitely variable

redrigenarC barC egairracdnE

L RK X H U l 1na l 2na g y akL l 3na l 4na d e TK l TKE ZPD b

4 808 807 86 0901 007 22 865 0041 5,2241 5,9651 061 0052 2992 001 571

5 808 807 86 0901 007 22 865 0041 5,2241 5,9651 061 0052 2992 001 571

6 808 807 86 0901 007 22 865 0041 5,2241 5,9651 061 0052 2992 001 571

7 808 807 86 0901 007 22 865 0041 5,2241 5,9651 061 0052 2992 001 571

8 808 807 86 0901 007 22 865 0041 5,2241 5,9651 061 0052 2992 001 571

9 808 807 86 0901 007 22 865 0041 5,2241 5,9651 061 0052 2992 001 571

01 808 807 86 0901 007 22 865 0041 5,2241 5,9651 061 0052 2992 001 571

11 808 807 86 0901 007 22 865 0041 5,2241 5,9651 061 0052 2992 001 571

21 808 807 86 0901 007 22 865 0041 5,2241 5,9651 061 0052 2992 001 571

31 808 807 86 0901 007 22 865 0041 5,2241 5,9651 061 0052 2992 001 571

41 808 807 86 0901 007 22 865 0041 5,2241 5,9651 061 0052 2992 001 571

51 808 807 07 0901 007 22 075 0041 5,2241 5,9651 061 0052 2992 001 571

61 808 807 861 0901 007 22 866 0041 5,2241 5,9651 061 0052 2992 001 571

71 808 807 861 0901 007 22 866 0041 5,2241 5,9651 061 0052 2992 001 571

81 808 807 071 0901 007 22 076 0041 5,2241 5,9651 061 0052 2992 001 571

91 018 017 271 0901 007 02 276 0041 5,2241 5,9651 061 0052 2992 001 571

02 808 807 862 0901 007 22 867 0041 5,7471 5,4981 061 0513 2463 001 571

12 808 807 072 0901 007 22 077 0041 5,7471 5,4981 061 0513 2463 001 571

22 808 807 272 0901 007 22 277 0041 5,7471 5,4981 061 0513 2463 001 571

32 808 807 072 0901 007 22 077 0041 5,7471 5,4981 061 0513 2463 001 571

42 808 807 863 0901 007 22 868 0041 5,7671 5,4191 061 0513 2863 031 571

52 598 597 182 011 017 56- 187 0422 5,5222 5,2732 002 0004 8954 031 571

62 598 597 182 0011 017 56- 187 0422 5,5222 5,2732 002 0004 8954 031 571

72 598 597 183 0011 017 56- 188 0422 5,5222 5,2732 002 0004 8954 031 571

82 598 597 183 0011 017 56- 188 0422 5,5222 5,2732 002 0004 8954 031 571

92 798 797 383 0011 017 76- 388 0422 5,5222 5,2732 002 0004 8954 031 571

03 798 797 583 0011 017 76- 588 0422 5,5222 5,2732 002 0004 8954 031 571

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All dimensions in mm (LKR in m).For further information, refer to the fold out page.All structural dimensions, approach dimensions and information on the crane runway dimensions are based on the standard design 1 presented in this catalogue.Check for any deviations. Comply with the instructions on the fold out page.

20356009.eps

b

g

X1

Y

Ian 2Ian 1

Lkr

100

U

Hook path: 10 or 6 m; lifting speed: 6/1 m/min; 9/1,5 m/min or 1 – 12,5 m/min infinitely variable

Cross travel speed 1,5 – 30 m/min infinitely variable

ZKKE without crane platform SWL 5 tCrane girders: Box-girder; design 1End carriage: DFW-L-Z_ _ _ /_ _ _ _/SCrab: 1x EZDR 5 - 5 4/1 H20

redrigenarC barC egairracdnE

L RK X H U l 1na l 2na g y akL l 3na l 4na d e TK l TKE ZPD b

4 808 807 86 0901 007 22 865 0041 5,2241 5,9651 061 0052 2992 001 571

5 808 807 86 0901 007 22 865 0041 5,2241 5,9651 061 0052 2992 001 571

6 808 807 86 0901 007 22 865 0041 5,2241 5,9651 061 0052 2992 001 571

7 808 807 86 0901 007 22 865 0041 5,2241 5,9651 061 0052 2992 001 571

8 808 807 86 0901 007 22 865 0041 5,2241 5,9651 061 0052 2992 001 571

9 808 807 86 0901 007 22 865 0041 5,2241 5,9651 061 0052 2992 001 571

01 808 807 86 0901 007 22 865 0041 5,2241 5,9651 061 0052 2992 001 571

11 808 807 86 0901 007 22 865 0041 5,2241 5,9651 061 0052 2992 001 571

21 808 807 86 0901 007 22 865 0041 5,2241 5,9651 061 0052 2992 001 571

31 808 807 861 0901 007 22 866 0041 5,2241 5,9651 061 0052 2992 001 571

41 808 807 861 0901 007 22 866 0041 5,2241 5,9651 061 0052 2992 001 571

51 808 807 861 0901 007 22 866 0041 5,2241 5,9651 061 0052 2992 001 571

61 808 807 071 0901 007 22 076 0041 5,2241 5,9651 061 0052 2992 001 571

71 808 807 862 0901 007 22 867 0041 5,2241 5,9651 061 0052 2992 001 571

81 808 807 862 0901 007 22 867 0041 5,2241 5,9651 061 0052 2992 001 571

91 808 807 072 0901 007 22 077 0041 5,2241 5,9651 061 0052 2992 001 571

02 808 807 862 0901 007 22 867 0041 5,7471 5,4981 061 0513 2463 001 571

12 808 807 072 0901 007 22 077 0041 5,7471 5,4981 061 0513 2463 001 571

22 018 017 072 0901 007 02 077 0041 5,7471 5,4981 061 0513 2463 001 571

32 808 807 863 0901 007 22 868 0041 5,7671 5,4191 061 0513 2863 031 571

42 808 807 073 0901 007 22 078 0041 5,7671 5,4191 061 0513 2863 031 571

52 598 597 183 0011 017 56- 188 0422 5,5222 5,2732 002 0004 8954 031 571

62 598 597 183 0011 017 56- 188 0422 5,5222 5,2732 002 0004 8954 031 571

72 598 597 184 0011 017 56- 189 0422 5,5222 5,2732 002 0004 8954 031 571

82 598 597 184 0011 017 56- 189 0422 5,5222 5,2732 002 0004 8954 031 571

92 598 597 384 0011 017 56- 389 0422 5,5222 5,2732 002 0004 8954 031 571

03 798 797 584 0011 017 76- 589 0422 5,5222 5,2732 002 0004 8954 031 571

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All dimensions in mm (LKR in m).For further information, refer to the fold out page.All structural dimensions, approach dimensions and information on the crane runway dimensions are based on the standard design 1 presented in this catalogue.Check for any deviations. Comply with the instructions on the fold out page.

20356009.eps

b

g

X1

Y

Ian 2Ian 1

Lkr

100

U

Hook path 10 or 6 m; lifting speed: 6/1 m/min; 9/1,5 m/min or 1 – 12,5 m/min infinitely variable

Cross travel speed 1,5 – 30 m/min infinitely variable

ZKKE without crane platform SWL 6,3 tCrane girders: Box-girder; design 1End carriage: DFW-L-Z_ _ _ /_ _ _ _/SCrab: 1x EZDR 10 - 6,3 4/1 H20

redrigenarC barC egairracdnE

L RK X H U l 1na l 2na g y akL l 3na l 4na d e TK l TKE ZPD b

4 808 807 86 0901 007 73 865 0041 5,9131 5,2761 061 0052 2992 001 571

5 808 807 86 0901 007 73 865 0041 5,9131 5,2761 061 0052 2992 001 571

6 808 807 86 0901 007 73 865 0041 5,9131 5,2761 061 0052 2992 001 571

7 808 807 86 0901 007 73 865 0041 5,9131 5,2761 061 0052 2992 001 571

8 808 807 86 0901 007 73 865 0041 5,9131 5,2761 061 0052 2992 001 571

9 808 807 86 0901 007 73 865 0041 5,9131 5,2761 061 0052 2992 001 571

01 808 807 86 0901 007 73 865 0041 5,9131 5,2761 061 0052 2992 001 571

11 808 807 861 0901 007 73 866 0041 5,9131 5,2761 061 0052 2992 001 571

21 808 807 861 0901 007 73 866 0041 5,9131 5,2761 061 0052 2992 001 571

31 808 807 071 0901 007 73 076 0041 5,9131 5,2761 061 0052 2992 001 571

41 018 017 271 0901 007 53 276 0041 5,9131 5,2761 061 0052 2992 001 571

51 018 017 571 0901 007 53 576 0041 5,9131 5,2761 061 0052 2992 001 571

61 808 807 072 0901 007 73 077 0041 5,9131 5,2761 061 0052 2992 001 571

71 018 017 272 0901 007 53 277 0041 5,9131 5,2761 061 0052 2992 001 571

81 218 217 272 0901 007 33 277 0041 5,9131 5,2761 061 0052 2992 001 571

91 808 807 073 0901 007 73 078 0041 5,9131 5,2761 061 0052 2992 001 571

02 808 807 863 0901 007 73 868 0041 5,4461 5,7991 061 0513 2463 001 571

12 808 807 863 0901 007 73 868 0041 5,4461 5,7991 061 0513 2463 001 571

22 808 807 073 0901 007 73 078 0041 5,4661 5,7102 061 0513 2863 031 571

32 018 017 073 0901 007 53 078 0041 5,4661 5,7102 061 0513 2863 031 571

42 808 807 864 0901 007 73 869 0041 5,4661 5,7102 061 0513 2863 031 571

52 598 597 383 0011 017 05- 388 0422 5,6122 5,1832 002 0004 8954 031 571

62 798 797 383 0011 017 25- 388 0422 5,6122 5,1832 002 0004 8954 031 571

72 798 797 184 0011 017 25- 189 0422 5,6122 5,1832 002 0004 8954 031 571

82 598 597 384 0011 017 05- 389 0422 5,6122 5,1832 002 0004 8954 031 571

92 598 597 185 0011 017 05- 1801 0422 5,6122 5,1832 002 0004 8954 031 571

03 798 797 185 0011 017 25- 1801 0422 5,6122 5,1832 002 0004 8954 031 571

Page 9: Demag ZKKE standard double-girder overhead …...Demag ZKKE standard double-girder overhead travelling crane with EZDR double-rail crab Dimension catalogue 180405 EN 203 561 44 714

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2.p

65/1

8040

5

All dimensions in mm (LKR in m).For further information, refer to the fold out page.All structural dimensions, approach dimensions and information on the crane runway dimensions are based on the standard design 1 presented in this catalogue.Check for any deviations. Comply with the instructions on the fold out page.

20356009.eps

b

g

X1

Y

Ian 2Ian 1

Lkr

100

U

Hook path 10 or 6 m; lifting speed: 6/1 m/min; 9/1,5 m/min or 1 – 12,5 m/min infinitely variable

Cross travel speed 1,5 – 30 m/min infinitely variable

ZKKE without crane platform SWL 8 tCrane girders: Box-girder; design 1End carriage: DFW-L-Z_ _ _ /_ _ _ _/SCrab: 1x EZDR 10 - 8 4/1 H20

redrigenarC barC egairracdnE

L RK X H U l 1na l 2na g y akL l 3na l 4na d e TK l TKE ZPD b

4 808 807 86 0901 007 73 865 0041 5,9131 5,2761 061 0052 2992 001 571

5 808 807 86 0901 007 73 865 0041 5,9131 5,2761 061 0052 2992 001 571

6 808 807 86 0901 007 73 865 0041 5,9131 5,2761 061 0052 2992 001 571

7 808 807 86 0901 007 73 865 0041 5,9131 5,2761 061 0052 2992 001 571

8 808 807 86 0901 007 73 865 0041 5,9131 5,2761 061 0052 2992 001 571

9 808 807 07 0901 007 73 075 0041 5,9131 5,2761 061 0052 2992 001 571

01 018 017 27 0901 007 53 275 0041 5,9131 5,2761 061 0052 2992 001 571

11 808 807 861 0901 007 73 866 0041 5,9131 5,2761 061 0052 2992 001 571

21 018 017 071 0901 007 53 076 0041 5,9131 5,2761 061 0052 2992 001 571

31 808 807 862 0901 007 73 867 0041 5,9131 5,2761 061 0052 2992 001 571

41 808 807 862 0901 007 73 867 0041 5,9131 5,2761 061 0052 2992 001 571

51 018 017 072 0901 007 53 077 0041 5,9131 5,2761 061 0052 2992 001 571

61 018 017 572 0901 007 53 577 0041 5,9131 5,2761 061 0052 2992 001 571

71 018 017 073 0901 007 53 078 0041 5,9131 5,2761 061 0052 2992 001 571

81 018 017 273 0901 007 53 278 0041 5,9131 5,2761 061 0052 2992 001 571

91 808 807 864 0901 007 73 869 0041 5,9131 5,2761 061 0052 2992 001 571

02 808 807 864 0901 007 73 869 0041 5,4661 5,7102 061 0513 2863 031 571

12 808 807 864 0901 007 73 869 0041 5,4661 5,7102 061 0513 2863 031 571

22 808 807 864 0901 007 73 869 0041 5,4661 5,7102 061 0513 2863 031 571

32 808 807 864 0901 007 73 869 0041 5,4661 5,7102 061 0513 2863 031 571

42 808 807 074 0901 007 73 079 0041 5,4661 5,7102 061 0513 2863 031 571

52 598 597 184 0011 017 05- 189 0422 5,6122 5,1832 002 0004 8954 031 571

62 598 597 184 0011 017 05- 189 0422 5,6122 5,1832 002 0004 8954 031 571

72 798 797 384 0011 017 25- 389 0422 5,6122 5,1832 002 0004 8954 031 571

82 598 597 185 0011 017 05- 1801 0422 5,6122 5,1832 002 0004 8954 031 571

92 598 597 185 0011 017 05- 1801 0422 5,6122 5,1832 002 0004 8954 031 571

03 798 797 185 0011 017 25- 1801 0422 5,6122 5,1832 002 0004 8954 031 571

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8040

5

All dimensions in mm (LKR in m).For further information, refer to the fold out page.All structural dimensions, approach dimensions and information on the crane runway dimensions are based on the standard design 1 presented in this catalogue.Check for any deviations. Comply with the instructions on the fold out page.

20356009.eps

b

g

X1

Y

Ian 2Ian 1

Lkr

100

U

Hook path 10 or 6 m; lifting speed: 6/1 m/min; 9/1,5 m/min or 1 – 12,5 m/min infinitely variable

Cross travel speed 1,5 – 30 m/min infinitely variable

ZKKE without crane platform SWL 10 tCrane girders: Box-girder; design 1End carriage: DFW-L-Z_ _ _ /_ _ _ _/SCrab: 1x EZDR 10 - 10 4/1 H20

redrigenarC barC egairracdnE

L RK X H U l 1na l 2na g y akL l 3na l 4na d e TK l TKE ZPD b

4 808 807 86 0901 007 73 865 0041 5,9131 5,2761 061 0052 2992 001 571

5 808 807 86 0901 007 73 865 0041 5,9131 5,2761 061 0052 2992 001 571

6 808 807 86 0901 007 73 865 0041 5,9131 5,2761 061 0052 2992 001 571

7 808 807 86 0901 007 73 865 0041 5,9131 5,2761 061 0052 2992 001 571

8 808 807 86 0901 007 73 865 0041 5,9131 5,2761 061 0052 2992 001 571

9 018 017 27 0901 007 53 275 0041 5,9131 5,2761 061 0052 2992 001 571

01 808 807 861 0901 007 73 866 0041 5,9131 5,2761 061 0052 2992 001 571

11 018 017 071 0901 007 53 076 0041 5,9131 5,2761 061 0052 2992 001 571

21 808 807 862 0901 007 73 867 0041 5,9131 5,2761 061 0052 2992 001 571

31 808 807 072 0901 007 73 077 0041 5,9131 5,2761 061 0052 2992 001 571

41 018 017 572 0901 007 53 577 0041 5,9131 5,2761 061 0052 2992 001 571

51 808 807 863 0901 007 73 868 0041 5,9131 5,2761 061 0052 2992 001 571

61 798 797 382 0011 017 25- 387 0041 5,2531 5,5071 002 0052 8503 001 571

71 998 997 582 0011 017 45- 587 0041 5,2531 5,5071 002 0052 8503 001 571

81 798 797 183 0011 017 25- 188 0041 5,2531 5,5071 002 0052 8503 001 571

91 798 797 383 0011 017 25- 388 0041 5,2531 5,5071 002 0052 8503 001 571

02 598 597 183 0011 017 05- 188 0041 5,7961 5,0502 002 0513 8473 031 571

12 798 797 183 0011 017 25- 188 0041 5,7961 5,0502 002 0513 8473 031 571

22 798 797 383 0011 017 25- 388 0041 5,7961 5,0502 002 0513 8473 031 571

32 998 997 583 0011 017 45- 588 0041 5,7961 5,0502 002 0513 8473 031 571

42 798 797 384 0011 017 25- 389 0041 5,7961 5,0502 002 0513 8473 031 571

52 798 797 384 0011 017 25- 389 0422 5,6122 5,1832 002 0004 8954 031 571

62 998 997 384 0011 017 45- 389 0422 5,6122 5,1832 002 0004 8954 031 571

72 598 597 185 0011 017 05- 1801 0422 5,6122 5,1832 002 0004 8954 031 571

82 798 797 385 0011 017 25- 3801 0422 5,6122 5,1832 002 0004 8954 031 571

92 598 597 385 0011 017 05- 3801 0422 5,6122 5,1832 002 0004 8954 031 571

03 798 797 585 0011 017 25- 5801 0422 5,8422 5,3142 002 0004 2664 061 571

Page 11: Demag ZKKE standard double-girder overhead …...Demag ZKKE standard double-girder overhead travelling crane with EZDR double-rail crab Dimension catalogue 180405 EN 203 561 44 714

112035

61K

2.p

65/1

8040

5

All dimensions in mm (LKR in m).For further information, refer to the fold out page.All structural dimensions, approach dimensions and information on the crane runway dimensions are based on the standard design 1 presented in this catalogue.Check for any deviations. Comply with the instructions on the fold out page.

20356009.eps

b

g

X1

Y

Ian 2Ian 1

Lkr

100

U

Hook path 6,7 m; lifting speed: 6/1 m/min; 2,7/0,4 m/min or 0,7 – 6 m/min infinitely variable

Cross travel speed 1,5 – 30 m/min infinitely variable

ZKKE without crane platform SWL 12,5 tCrane girders: Box-girder; design 1End carriage: DFW-L-Z_ _ _ /_ _ _ _/SCrab: 1x EZDR 10 - 12,5 6/1 H20

redrigenarC barC egairracdnE

L RK X H U l 1na l 2na g y akL l 3na l 4na d e TK l TKE ZPD b

4 859 858 86 0011 0001 743 865 0041 5,1921 5,0071 061 0052 2992 001 571

5 859 858 86 0011 0001 743 865 0041 5,1921 5,0071 061 0052 2992 001 571

6 859 858 86 0011 0001 743 865 0041 5,1921 5,0071 061 0052 2992 001 571

7 5401 549 91- 0111 0101 062 184 0041 5,4231 5,3371 002 0052 8503 001 571

8 7401 749 51- 0111 0101 852 584 0041 5,4231 5,3371 002 0052 8503 001 571

9 5401 549 18 0111 0101 062 185 0041 5,4231 5,3371 002 0052 8503 001 571

01 7401 749 38 0111 0101 852 385 0041 5,4231 5,3371 002 0052 8503 001 571

11 7401 749 181 0111 0101 852 186 0041 5,4231 5,3371 002 0052 8503 001 571

21 9401 949 381 0111 0101 652 386 0041 5,4231 5,3371 002 0052 8503 001 571

31 5401 549 182 0111 0101 062 187 0041 5,4231 5,3371 002 0052 8503 001 571

41 7401 749 182 0111 0101 852 187 0041 5,4231 5,3371 002 0052 8503 001 571

51 7401 749 582 0111 0101 852 587 0041 5,4231 5,3371 002 0052 8503 001 571

61 5401 549 183 0111 0101 062 188 0041 5,4231 5,3371 002 0052 8503 001 571

71 7401 749 383 0111 0101 852 388 0041 5,4231 5,3371 002 0052 8503 001 571

81 9401 949 583 0111 0101 652 588 0041 5,4431 5,3571 002 0052 8903 031 571

91 2501 259 883 0111 0101 352 888 0041 5,4431 5,3571 002 0052 8903 031 571

02 5401 549 184 0111 0101 062 189 0041 5,9661 5,8702 002 0513 8473 031 571

12 5401 549 184 0111 0101 062 189 0041 5,9661 5,8702 002 0513 8473 031 571

22 5401 549 384 0111 0101 062 389 0041 5,9661 5,8702 002 0513 8473 031 571

32 9401 949 384 0111 0101 652 389 0041 5,9661 5,8702 002 0513 8473 031 571

42 5401 549 385 0111 0101 062 3801 0041 5,9661 5,8702 002 0513 8473 031 571

52 3601 369 565 0011 0001 242 5601 0422 5,6622 5,5732 052 0004 2464 031 002

62 3601 369 565 0011 0001 242 5601 0422 5,6622 5,5732 052 0004 2464 031 002

72 5601 569 765 0011 0001 042 7601 0422 5,6622 5,5732 052 0004 2464 031 002

82 5601 569 565 0011 0001 042 5601 0422 5,8922 5,7042 052 0004 6074 061 002

92 7601 769 765 0011 0001 832 7601 0422 5,8922 5,7042 052 0004 6074 061 002

03 7601 769 075 0011 0001 832 0701 0422 5,8922 5,7042 052 0004 6074 061 002

Page 12: Demag ZKKE standard double-girder overhead …...Demag ZKKE standard double-girder overhead travelling crane with EZDR double-rail crab Dimension catalogue 180405 EN 203 561 44 714

12 2035

61K

2.p

65/1

8040

5

All dimensions in mm (LKR in m).For further information, refer to the fold out page.All structural dimensions, approach dimensions and information on the crane runway dimensions are based on the standard design 1 presented in this catalogue.Check for any deviations. Comply with the instructions on the fold out page.

20356009.eps

b

g

X1

Y

Ian 2Ian 1

Lkr

100

U

Hook path 6,7 m; lifting speed: 6/1 m/min; 2,7/0,4 m/min or 0,7 – 6 m/min infinitely variable

Cross travel speed 1,5 – 30 m/min infinitely variable

ZKKE without crane platform SWL 16 tCrane girders: Box-girder; design 1End carriage: DFW-L-Z_ _ _ /_ _ _ _/SCrab: 1x EZDR 10 - 16 6/1 H20

redrigenarC barC egairracdnE

L RK X H U l 1na l 2na g y akL l 3na l 4na d e TK l TKE ZPD b

4 5401 549 91- 0111 0101 062 184 0041 5,4231 5,3371 002 0052 8503 001 571

5 5401 549 91- 0111 0101 062 184 0041 5,4231 5,3371 002 0052 8503 001 571

6 5401 549 91- 0111 0101 062 184 0041 5,4231 5,3371 002 0052 8503 001 571

7 7401 749 71- 0111 0101 852 384 0041 5,4231 5,3371 002 0052 8503 001 571

8 5401 549 18 0111 0101 062 185 0041 5,4231 5,3371 002 0052 8503 001 571

9 7401 749 38 0111 0101 852 385 0041 5,4231 5,3371 002 0052 8503 001 571

01 5401 549 181 0111 0101 062 186 0041 5,4231 5,3371 002 0052 8503 001 571

11 7401 749 381 0111 0101 852 386 0041 5,4231 5,3371 002 0052 8503 001 571

21 5401 549 182 0111 0101 062 187 0041 5,4231 5,3371 002 0052 8503 001 571

31 5601 569 562 0011 0001 042 567 0041 5,6431 5,5571 052 0052 2013 001 002

41 5601 569 563 0011 0001 042 568 0041 5,6431 5,5571 052 0052 2013 001 002

51 5601 569 563 0011 0001 042 568 0041 5,6431 5,5571 052 0052 2013 001 002

61 0701 079 564 0011 0001 532 569 0041 5,6431 5,5571 052 0052 2013 001 002

71 0701 079 564 0011 0001 532 569 0041 5,6631 5,5771 052 0052 2413 031 002

81 0701 079 564 0011 0001 532 569 0041 5,6631 5,5771 052 0052 2413 031 002

91 0701 079 074 0011 0001 532 079 0041 5,6631 5,5771 052 0052 2413 031 002

02 5601 569 564 0011 0001 042 569 0041 5,1961 5,0012 052 0513 2973 031 002

12 7601 769 764 0011 0001 832 769 0041 5,1961 5,0012 052 0513 2973 031 002

22 0701 079 764 0011 0001 532 769 0041 5,1961 5,0012 052 0513 2973 031 002

32 0701 079 074 0011 0001 532 079 0041 5,1961 5,0012 052 0513 2973 031 002

42 0701 079 565 0011 0001 532 5601 0041 5,1961 5,0012 052 0513 2973 031 002

52 0701 079 565 0011 0001 532 5601 0422 5,6622 5,5732 052 0004 2464 031 002

62 0701 079 565 0011 0001 532 5601 0422 5,6622 5,5732 052 0004 2464 031 002

72 3601 369 317 0011 0001 242 3121 0422 5,6622 5,5732 052 0004 2464 031 002

82 3601 369 317 0011 0001 242 3121 0422 5,6622 5,5732 052 0004 2464 031 002

92 5601 569 317 0011 0001 042 3121 0422 5,8922 5,7042 052 0004 6074 061 002

03 7601 769 517 0011 0001 832 5121 0422 5,8922 5,7042 052 0004 6074 061 002

Page 13: Demag ZKKE standard double-girder overhead …...Demag ZKKE standard double-girder overhead travelling crane with EZDR double-rail crab Dimension catalogue 180405 EN 203 561 44 714

132035

61K

3.p

65/1

8040

5

20356010.eps

Demag ZKKE standard double-girder overhead travelling craneCrane girders: Box-girder; design 1End carriage: DFW-L-Z_ _ _ /_ _ _ _/SCrab: 2 x EZDR

DFW-L-Z 160 / 2500 / S

Side connection

Wheel base ekt

Travel wheel diameter d

Demag end carriage type Z

Type designation

EZDR 10 - 8 4/1 FEM 3m

Reeving

SWL in t

Range 3; 5; 10

Double-rail crab withDemag rope hoist type DR

lh

X1

b

g

U

Y

Ian 2Ian 1

Lkr

100

gameDeportsioh

egnaR gniveeR hl ≥

mm

RDZE5

1/4,1/2 052101

Page 14: Demag ZKKE standard double-girder overhead …...Demag ZKKE standard double-girder overhead travelling crane with EZDR double-rail crab Dimension catalogue 180405 EN 203 561 44 714

14 2035

61K

4.p6

5/18

0405

All dimensions in mm (LKR in m).For further information, refer to the fold out page.All structural dimensions, approach dimensions and information on the crane runway dimensions are based on the standard design 1 presented in this catalogue.Check for any deviations. Comply with the instructions on the fold out page.

20356011.eps

X1

b

U

Y

Ian 2Ian 1

Lkr

100

g

ZKKE without platform SWL 2 x 3,2 tCrane girders: Box girder; design 1End carriage: DFW-L-Z_ _ _ /_ _ _ _/SCrab: 2 x EZDR 5 - 3,2 4/1 FEM 4m

Hook path: 10 or 6 m; lifting speed: 9/1,5 m/min; 1 – 12,5 m/min infinitely variable

Cross travel speed 1,5 – 30 m/min infinitely variableredrigenarC barC egairracdnE

L RK X H U l 1na l 2na g y akL l 3na l 4na d e TK l TKE ZPD b

4 808 807 86 0901 007 22 865 0041 5,2241 5,9651 061 0052 2992 001 571

5 808 807 86 0901 007 22 865 0041 5,2241 5,9651 061 0052 2992 001 571

6 808 807 86 0901 007 22 865 0041 5,2241 5,9651 061 0052 2992 001 571

7 808 807 86 0901 007 22 865 0041 5,2241 5,9651 061 0052 2992 001 571

8 808 807 86 0901 007 22 865 0041 5,2241 5,9651 061 0052 2992 001 571

9 808 807 86 0901 007 22 865 0041 5,2241 5,9651 061 0052 2992 001 571

01 808 807 86 0901 007 22 865 0041 5,2241 5,9651 061 0052 2992 001 571

11 808 807 07 0901 007 22 075 0041 5,2241 5,9651 061 0052 2992 001 571

21 808 807 861 0901 007 22 866 0041 5,2241 5,9651 061 0052 2992 001 571

31 808 807 861 0901 007 22 866 0041 5,2241 5,9651 061 0052 2992 001 571

41 808 807 071 0901 007 22 076 0041 5,2241 5,9651 061 0052 2992 001 571

51 018 017 271 0901 007 02 276 0041 5,2241 5,9651 061 0052 2992 001 571

61 808 807 862 0901 007 22 867 0041 5,2241 5,9651 061 0052 2992 001 571

71 808 807 072 0901 007 22 077 0041 5,2241 5,9651 061 0052 2992 001 571

81 018 017 272 0901 007 02 277 0041 5,2241 5,9651 061 0052 2992 001 571

91 808 807 863 0901 007 22 868 0041 5,2241 5,9651 061 0052 2992 001 571

02 808 807 863 0901 007 22 868 0041 5,7471 5,4981 061 0513 2463 001 571

12 808 807 863 0901 007 22 868 0041 5,7671 5,4191 061 0513 2863 031 571

22 808 807 863 0901 007 22 868 0041 5,7671 5,4191 061 0513 2863 031 571

32 018 017 073 0901 007 02 078 0041 5,7671 5,4191 061 0513 2863 031 571

42 808 807 864 0901 007 22 869 0041 5,7671 5,4191 061 0513 2863 031 571

52 598 597 383 0011 017 56- 388 0422 5,5222 5,2732 002 0004 8954 031 571

62 798 797 583 0011 017 76- 588 0422 5,5222 5,2732 002 0004 8954 031 571

72 598 597 384 0011 017 56- 389 0422 5,5222 5,2732 002 0004 8954 031 571

82 798 797 384 0011 017 76- 389 0422 5,5222 5,2732 002 0004 8954 031 571

92 998 997 584 0011 017 96- 589 0422 5,5222 5,2732 002 0004 8954 031 571

03 798 797 385 0011 017 76- 3801 0422 5,5222 5,2732 002 0004 8954 031 571

Page 15: Demag ZKKE standard double-girder overhead …...Demag ZKKE standard double-girder overhead travelling crane with EZDR double-rail crab Dimension catalogue 180405 EN 203 561 44 714

152035

61K

4.p6

5/18

0405

All dimensions in mm (LKR in m).For further information, refer to the fold out page.All structural dimensions, approach dimensions and information on the crane runway dimensions are based on the standard design 1 presented in this catalogue.Check for any deviations. Comply with the instructions on the fold out page.

20356011.eps

X1

b

U

Y

Ian 2Ian 1

Lkr

100

g

ZKKE without platform SWL 2 x 4 tCrane girders: Box girder; design 1End carriage: DFW-L-Z_ _ _ /_ _ _ _/SCrab: 2 x EZDR 5 - 4 4/1 H20

Hook path: 10 or 6 m; lifting speed: 9/1,5 m/min; 1 – 12,5 m/min infinitely variable

Cross travel speed 1,5 – 30 m/min infinitely variableredrigenarC barC egairracdnE

L RK X H U l 1na l 2na g y akL l 3na l 4na d e TK l TKE ZPD b

4 808 807 86 0901 007 22 865 0041 5,2241 5,9651 061 0052 2992 001 571

5 808 807 86 0901 007 22 865 0041 5,2241 5,9651 061 0052 2992 001 571

6 808 807 86 0901 007 22 865 0041 5,2241 5,9651 061 0052 2992 001 571

7 808 807 86 0901 007 22 865 0041 5,2241 5,9651 061 0052 2992 001 571

8 808 807 86 0901 007 22 865 0041 5,2241 5,9651 061 0052 2992 001 571

9 808 807 86 0901 007 22 865 0041 5,2241 5,9651 061 0052 2992 001 571

01 808 807 07 0901 007 22 075 0041 5,2241 5,9651 061 0052 2992 001 571

11 808 807 861 0901 007 22 866 0041 5,2241 5,9651 061 0052 2992 001 571

21 808 807 861 0901 007 22 866 0041 5,2241 5,9651 061 0052 2992 001 571

31 018 017 071 0901 007 02 076 0041 5,2241 5,9651 061 0052 2992 001 571

41 808 807 862 0901 007 22 867 0041 5,2241 5,9651 061 0052 2992 001 571

51 808 807 862 0901 007 22 867 0041 5,2241 5,9651 061 0052 2992 001 571

61 018 017 072 0901 007 02 077 0041 5,2241 5,9651 061 0052 2992 001 571

71 808 807 863 0901 007 22 868 0041 5,2241 5,9651 061 0052 2992 001 571

81 808 807 073 0901 007 22 078 0041 5,2241 5,9651 061 0052 2992 001 571

91 018 017 073 0901 007 02 078 0041 5,2241 5,9651 061 0052 2992 001 571

02 808 807 863 0901 007 22 868 0041 5,7471 5,4981 061 0513 2463 001 571

12 808 807 073 0901 007 22 078 0041 5,7671 5,4191 061 0513 2863 031 571

22 018 017 073 0901 007 02 078 0041 5,7671 5,4191 061 0513 2863 031 571

32 808 807 864 0901 007 22 869 0041 5,7671 5,4191 061 0513 2863 031 571

42 808 807 074 0901 007 22 079 0041 5,7671 5,4191 061 0513 2863 031 571

52 598 597 184 0011 017 56- 189 0422 5,5222 5,2732 002 0004 8954 031 571

62 598 597 384 0011 017 56- 389 0422 5,5222 5,2732 002 0004 8954 031 571

72 798 797 584 0011 017 76- 589 0422 5,5222 5,2732 002 0004 8954 031 571

82 598 597 185 0011 017 56- 1801 0422 5,5222 5,2732 002 0004 8954 031 571

92 598 597 185 0011 017 56- 1801 0422 5,5222 5,2732 002 0004 8954 031 571

03 598 597 385 0011 017 56- 3801 0422 5,5222 5,2732 002 0004 8954 031 571

Page 16: Demag ZKKE standard double-girder overhead …...Demag ZKKE standard double-girder overhead travelling crane with EZDR double-rail crab Dimension catalogue 180405 EN 203 561 44 714

16 2035

61K

4.p6

5/18

0405

All dimensions in mm (LKR in m).For further information, refer to the fold out page.All structural dimensions, approach dimensions and information on the crane runway dimensions are based on the standard design 1 presented in this catalogue.Check for any deviations. Comply with the instructions on the fold out page.

20356011.eps

X1

b

U

Y

Ian 2Ian 1

Lkr

100

g

ZKKE without platform SWL 2 x 5 tCrane girders: Box girder; design 1End carriage: DFW-L-Z_ _ _ /_ _ _ _/SCrab: 2x EZDR 5 - 5 4/1 H20

Hook path: 10 or 6 m; lifting speed: 9/1,5 m/min; 1 – 12,5 m/min infinitely variable

Cross travel speed 1,5 – 30 m/min infinitely variableredrigenarC barC egairracdnE

L RK X H U l 1na l 2na g y akL l 3na l 4na d e TK l TKE ZPD b

4 808 807 86 0901 007 22 865 0041 5,2241 5,9651 061 0052 2992 001 571

5 808 807 86 0901 007 22 865 0041 5,2241 5,9651 061 0052 2992 001 571

6 808 807 86 0901 007 22 865 0041 5,2241 5,9651 061 0052 2992 001 571

7 808 807 86 0901 007 22 865 0041 5,2241 5,9651 061 0052 2992 001 571

8 808 807 86 0901 007 22 865 0041 5,2241 5,9651 061 0052 2992 001 571

9 808 807 07 0901 007 22 075 0041 5,2241 5,9651 061 0052 2992 001 571

01 808 807 861 0901 007 22 866 0041 5,2241 5,9651 061 0052 2992 001 571

11 808 807 861 0901 007 22 866 0041 5,2241 5,9651 061 0052 2992 001 571

21 808 807 862 0901 007 22 867 0041 5,2241 5,9651 061 0052 2992 001 571

31 808 807 862 0901 007 22 867 0041 5,2241 5,9651 061 0052 2992 001 571

41 808 807 072 0901 007 22 077 0041 5,2241 5,9651 061 0052 2992 001 571

51 808 807 863 0901 007 22 868 0041 5,2241 5,9651 061 0052 2992 001 571

61 808 807 863 0901 007 22 868 0041 5,2241 5,9651 061 0052 2992 001 571

71 018 017 073 0901 007 02 078 0041 5,2241 5,9651 061 0052 2992 001 571

81 808 807 864 0901 007 22 869 0041 5,2241 5,9651 061 0052 2992 001 571

91 808 807 074 0901 007 22 079 0041 5,2241 5,9651 061 0052 2992 001 571

02 598 597 183 0011 017 56- 188 0041 5,0081 5,7491 002 0513 8473 031 571

12 598 597 183 0011 017 56- 188 0041 5,0081 5,7491 002 0513 8473 031 571

22 598 597 383 0011 017 56- 388 0041 5,0081 5,7491 002 0513 8473 031 571

32 798 797 383 0011 017 76- 388 0041 5,0081 5,7491 002 0513 8473 031 571

42 598 597 184 0011 017 56- 189 0041 5,0081 5,7491 002 0513 8473 031 571

52 798 797 384 0011 017 76- 389 0422 5,5222 5,2732 002 0004 8954 031 571

62 798 797 584 0011 017 76- 589 0422 5,5222 5,2732 002 0004 8954 031 571

72 798 797 185 0011 017 76- 1801 0422 5,5222 5,2732 002 0004 8954 031 571

82 998 997 385 0011 017 96- 3801 0422 5,5222 5,2732 002 0004 8954 031 571

92 798 797 385 0011 017 76- 3801 0422 5,5222 5,2732 002 0004 8954 031 571

03 798 797 585 0011 017 76- 5801 0422 5,7522 5,4042 002 0004 2664 061 571

Page 17: Demag ZKKE standard double-girder overhead …...Demag ZKKE standard double-girder overhead travelling crane with EZDR double-rail crab Dimension catalogue 180405 EN 203 561 44 714

172035

61K

4.p6

5/18

0405

All dimensions in mm (LKR in m).For further information, refer to the fold out page.All structural dimensions, approach dimensions and information on the crane runway dimensions are based on the standard design 1 presented in this catalogue.Check for any deviations. Comply with the instructions on the fold out page.

20356011.eps

X1

b

U

Y

Ian 2Ian 1

Lkr

100

g

ZKKE without platform SWL 2 x 6 tCrane girders: Box girder; design 1End carriage: DFW-L-Z_ _ _ /_ _ _ _/SCrab: 2x EZDR 10 - 6,3 4/1 H20

Hook path: 10 or 6 m; lifting speed: 9/1,5 m/min; 1 – 12,5 m/min infinitely variable

Cross travel speed 1,5 – 30 m/min infinitely variableredrigenarC barC egairracdnE

L RK X H U l 1na l 2na g y akL l 3na l 4na d e TK l TKE ZPD b

4 328 327 86 0901 007 22 865 0041 5,9131 5,2761 061 0052 2992 001 571

5 328 327 86 0901 007 22 865 0041 5,9131 5,2761 061 0052 2992 001 571

6 328 327 86 0901 007 22 865 0041 5,9131 5,2761 061 0052 2992 001 571

7 019 018 91- 0011 017 56- 184 0041 5,2531 5,5071 002 0052 8503 001 571

8 219 218 71- 0011 017 76- 384 0041 5,2531 5,5071 002 0052 8503 001 571

9 019 018 18 0011 017 56- 185 0041 5,2531 5,5071 002 0052 8503 001 571

01 019 018 38 0011 017 56- 385 0041 5,2531 5,5071 002 0052 8503 001 571

11 019 018 181 0011 017 56- 186 0041 5,2531 5,5071 002 0052 8503 001 571

21 019 018 381 0011 017 56- 386 0041 5,2531 5,5071 002 0052 8503 001 571

31 019 018 182 0011 017 56- 187 0041 5,2531 5,5071 002 0052 8503 001 571

41 019 018 382 0011 017 56- 387 0041 5,2531 5,5071 002 0052 8503 001 571

51 219 218 582 0011 017 76- 587 0041 5,2531 5,5071 002 0052 8503 001 571

61 019 018 183 0011 017 56- 188 0041 5,2531 5,5071 002 0052 8503 001 571

71 219 218 383 0011 017 76- 388 0041 5,2531 5,5071 002 0052 8503 001 571

81 419 418 583 0011 017 96- 588 0041 5,2731 5,5271 002 0052 8903 031 571

91 019 018 384 0011 017 56- 389 0041 5,2731 5,5271 002 0052 8903 031 571

02 219 218 184 0011 017 76- 189 0041 5,7961 5,0502 002 0513 8473 031 571

12 219 218 184 0011 017 76- 189 0041 5,7961 5,0502 002 0513 8473 031 571

22 419 418 384 0011 017 96- 389 0041 5,7961 5,0502 002 0513 8473 031 571

32 219 218 384 0011 017 76- 389 0041 5,7961 5,0502 002 0513 8473 031 571

42 019 018 185 0011 017 56- 1801 0041 5,7961 5,0502 002 0513 8473 031 571

52 419 418 185 0011 017 96- 1801 0422 5,6122 5,1832 002 0004 8954 031 571

62 039 038 565 0011 017 58- 5601 0422 5,8322 5,3042 052 0004 2464 031 002

72 239 238 765 0901 007 78- 7601 0422 5,8322 5,3042 052 0004 2464 031 002

82 239 238 565 0901 007 78- 5601 0422 5,0722 5,5342 052 0004 6074 061 002

92 239 238 765 0901 007 78- 7601 0422 5,0722 5,5342 052 0004 6074 061 002

03 539 538 075 0901 007 09- 0701 0422 5,0722 5,5342 052 0004 6074 061 002

Page 18: Demag ZKKE standard double-girder overhead …...Demag ZKKE standard double-girder overhead travelling crane with EZDR double-rail crab Dimension catalogue 180405 EN 203 561 44 714

18 2035

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All dimensions in mm (LKR in m).For further information, refer to the fold out page.All structural dimensions, approach dimensions and information on the crane runway dimensions are based on the standard design 1 presented in this catalogue.Check for any deviations. Comply with the instructions on the fold out page.

20356011.eps

X1

b

U

Y

Ian 2Ian 1

Lkr

100

g

ZKKE without platform SWL 2 x 8 tCrane girders: Box girder; design 1End carriage: DFW-L-Z_ _ _ /_ _ _ _/SCrab: 2x EZDR 10 - 8 4/1 H20

Hook path: 10 or 6 m; lifting speed: 9/1,5 m/min; 1 – 12,5 m/min infinitely variable

Cross travel speed 1,5 – 30 m/min infinitely variableredrigenarC barC egairracdnE

L RK X H U l 1na l 2na g y akL l 3na l 4na d e TK l TKE ZPD b

4 019 018 91- 0011 017 56- 184 0041 5,2531 5,5071 002 0052 8503 001 571

5 019 018 91- 0011 017 56- 184 0041 5,2531 5,5071 002 0052 8503 001 571

6 019 018 91- 0011 017 56- 184 0041 5,2531 5,5071 002 0052 8503 001 571

7 019 018 71- 0011 017 56- 384 0041 5,2531 5,5071 002 0052 8503 001 571

8 019 018 18 0011 017 56- 185 0041 5,2531 5,5071 002 0052 8503 001 571

9 219 218 38 0011 017 76- 385 0041 5,2531 5,5071 002 0052 8503 001 571

01 019 018 181 0011 017 56- 186 0041 5,2531 5,5071 002 0052 8503 001 571

11 219 218 381 0011 017 76- 386 0041 5,2531 5,5071 002 0052 8503 001 571

21 019 018 182 0011 017 56- 187 0041 5,2531 5,5071 002 0052 8503 001 571

31 039 038 562 0901 007 58- 567 0041 5,4731 5,7271 052 0052 2013 001 002

41 829 828 363 0901 007 38- 368 0041 5,4731 5,7271 052 0052 2013 001 002

51 829 828 563 0901 007 38- 568 0041 5,4731 5,7271 052 0052 2013 001 002

61 829 828 364 0901 007 38- 369 0041 5,4931 5,7471 052 0052 2413 031 002

71 829 828 564 0901 007 38- 569 0041 5,4931 5,7471 052 0052 2413 031 002

81 039 038 764 0901 007 58- 769 0041 5,4931 5,7471 052 0052 2413 031 002

91 239 238 074 0901 007 78- 079 0041 5,4931 5,7471 052 0052 2413 031 002

02 039 038 564 0901 007 58- 569 0041 5,9171 5,2702 052 0513 2973 031 002

12 039 038 764 0901 007 58- 769 0041 5,9171 5,2702 052 0513 2973 031 002

22 829 828 565 0901 007 38- 5601 0041 5,9171 5,2702 052 0513 2973 031 002

32 039 038 565 0901 007 58- 5601 0041 5,9171 5,2702 052 0513 2973 031 002

42 239 238 765 0901 007 78- 7601 0041 5,9171 5,2702 052 0513 2973 031 002

52 239 238 765 0901 007 78- 7601 0422 5,8322 5,3042 052 0004 2464 031 002

62 239 238 075 0901 007 78- 0701 0422 5,8322 5,3042 052 0004 2464 031 002

72 829 828 317 0901 007 38- 3121 0422 5,8322 5,3042 052 0004 2464 031 002

82 829 828 517 0901 007 38- 5121 0422 5,0722 5,5342 052 0004 6074 061 002

92 039 038 517 0901 007 58- 5121 0422 5,0722 5,5342 052 0004 6074 061 002

03 239 238 717 0901 007 78- 7121 0422 5,0722 5,5342 052 0004 6074 061 002

Page 19: Demag ZKKE standard double-girder overhead …...Demag ZKKE standard double-girder overhead travelling crane with EZDR double-rail crab Dimension catalogue 180405 EN 203 561 44 714

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Details for crane runway dimensions DIN 4132Note: The effects of maximum and minimum loads and forces of the crane on the crane runways can vary depending

on the crab position and long travel direction (see figures 1 – 4).The following tables provide the maximum and minimum values for standard cranes.

Fig. 1: Crab at lan 1; + VKran

Fig. 2: Crab at lan 2; + VKran

)noisnemidhcaorppaelbaruovafnunibarC(81051NIDotFFE:metsysenarC

)stneiciffeoctuohtiw(sdaolleehW secrofekarBgnitlusersecrofaitrenI

levartgnolmorfsecrofgniwekS

dnereffuBecrof

gk Nk Nk Nk Nk

R.xam R.nim L MH.nim MH.xam S SH.xam SH.nim uP.xam

20356012.eps

20356013.eps

min R21

max R12

lan1

max Hs max Hm

Lkr

I s

S

max Hm

ekt

L

Pu1 = max Pu

max R11 +V kran

L

Pu2

min R22min Hm min HsS

min Hm

lan2

Lkr

I s

min R12min Hmmin Hs S

max R22max Hsmax Hm

S

max Hm

ekt

L

Pu1 = max Pu

max R21min R11 +V kran

L

Pu2

min Hm

Page 21: Demag ZKKE standard double-girder overhead …...Demag ZKKE standard double-girder overhead travelling crane with EZDR double-rail crab Dimension catalogue 180405 EN 203 561 44 714

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Details for crane runway dimensions DIN 4132Note: The effects of maximum and minimum loads and forces of the crane on the crane runways can vary depending

on the crab position and long travel direction (see figures 1 – 4).The following tables provide the maximum and minimum values for standard cranes.

Fig. 3: Crab at lan 1; – VKran

Fig. 4: Crab at lan 2; – VKran

)noisnemidhcaorppaelbaruovafnunibarC(81051NIDotFFE:metsysenarC

)stneiciffeoctuohtiw(sdaolleehW secrofekarBgnitlusersecrofaitrenI

levartgnolmorfsecrofgniwekS

dnereffuBecrof

gk Nk Nk Nk Nk

R.xam R.nim L MH.nim MH.xam S SH.xam SH.nim uP.xam

20356014.eps

20356015.eps

lan2

Lkr

I s

min R12min Hm

max R22

max Hs

max Hm

S

max Hm

ekt

L

Pu1 = max Pu

max R21min R11 +V kran

L

Pu2

min Hmmin Hs S

min R21

max R12

lan1

max Hs

max Hm

Lkr

I s

S

max Hm

ekt

L

Pu1 = max Pu

max R11 +V kran

L

Pu2

min R22min Hm

min HsSmin Hm

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m4MEF1/43,6-01RDZEx1-t3,6LWS

L RK m 4 5 6 7 8 9 01 11 21 31 41 51 61 71 81 91

G+(22R.xam H) gk 6892 7113 0223 6033 2833 2543 6153 0363 4963 5873 3193 1304 6404 0914 0034 8234

G+(12R.xam H) gk 7173 2683 4793 6604 6414 8124 4824 0044 5644 6554 4864 3084 7184 0694 0705 8905

G+(21R.nim H) gk 567 627 517 917 537 757 387 668 409 379 2801 5811 5811 6131 6141 4341

G+(11R.nim H) gk 708 057 727 227 037 647 767 648 088 649 1501 1511 8411 7721 3731 9831

3V)Rnim+Rxamx2(=mR 9842 8652 6362 7962 4572 9082 1682 5692 1203 5013 6223 0433 9433 9843 5953 0263

L Nk 95,0 56,0 07,0 57,0 18,0 68,0 29,0 30,1 90,1 91,1 33,1 64,1 74,1 36,1 67,1 87,1

H.nim M Nk 11,0 51,0 91,0 32,0 92,0 53,0 14,0 25,0 16,0 37,0 09,0 80,1 51,1 83,1 95,1 07,1

H.xam M Nk 84,0 07,0 49,0 02,1 74,1 67,1 60,2 54,2 97,2 81,3 36,3 70,4 83,4 88,4 33,5 86,5

S Nk 43,11 95,11 38,11 80,21 23,21 75,21 18,21 53,31 36,31 60,41 17,41 13,51 43,51 90,61 66,61 97,61

H.xam S Nk 12,9 95,9 98,9 31,01 53,01 45,01 27,01 40,11 12,11 64,11 18,11 41,21 81,21 75,21 78,21 59,21

H.nim S Nk 31,2 00,2 49,1 59,1 79,1 30,2 90,2 13,2 24,2 06,2 09,2 71,3 61,3 25,3 97,3 48,3

P.xam U V( RK )nim/m04= Nk 76,7 75,8 33,9 72,01 20,11 86,11 95,21 35,41 25,51 62,71 30,02 55,22 47,22 19,52 24,82 89,82

P.xam U V( RK )nim/m06= Nk 96,91 09,22 52,52 32,82 41,13 69,33 64,63 17,12 23,32 26,62 24,13 23,73 96,73 60,44 61,23 96,23

GG gk 5791 5512 6332 3152 3962 3782 0503 2443 3463 0693 0344 0784 6984 3445 9585 9495

Loads and forces to DIN 15018Wheel loads/inertia forces/skewing forces/buffer forces/crane dead weight forces

m4MEF1/42,3-5RDZEx1-t2,3LWS

L RK m 4 5 6 7 8 9 01 11 21 31 41 51 61 71 81 91

G+(22R.xam H) gk 7302 8312 0222 1922 7532 8142 5742 1352 5852 7362 9862 5772 8682 3292 9103 3613

G+(12R.xam H) gk 3181 3091 7791 2402 3012 0612 3122 6622 7132 6632 5142 9942 9852 2462 6372 8782

G+(21R.nim H) gk 316 406 316 236 956 986 227 857 597 338 378 949 2301 9701 8611 6031

G+(11R.nim H) gk 825 725 145 265 195 226 656 296 927 767 608 188 369 9001 8901 4321

3V)Rnim+Rxamx2(=mR 8841 8451 3061 5561 6071 6571 3081 2581 9981 5491 2991 4702 3612 5122 8032 9442

L Nk 45,0 95,0 56,0 07,0 57,0 18,0 68,0 19,0 79,0 20,1 80,1 71,1 82,1 43,1 54,1 16,1

MH.nim Nk 11,0 51,0 91,0 42,0 03,0 73,0 34,0 15,0 95,0 86,0 77,0 98,0 30,1 51,1 03,1 15,1

MH.xam Nk 73,0 35,0 07,0 98,0 80,1 82,1 84,1 96,1 09,1 11,2 33,2 85,2 38,2 50,3 13,3 95,3

S Nk 48,6 90,7 33,7 85,7 28,7 70,8 13,8 65,8 18,8 50,9 03,9 47,9 12,01 94,01 99,01 67,11

H.xam s Nk 03,5 65,5 87,5 79,5 41,6 03,6 64,6 06,6 57,6 98,6 30,7 62,7 15,7 66,7 29,7 13,8

H.nim s Nk 45,1 35,1 55,1 16,1 86,1 77,1 58,1 69,1 60,2 61,2 72,2 84,2 07,2 38,2 70,3 54,3

P.xam U V( RK )nim/m04= Nk 60,7 16,7 14,8 80,9 09,9 27,01 43,11 30,21 30,31 98,31 67,41 23,61 63,81 55,91 66,12 28,42

P.xam U V( RK )nim/m06= Nk 36,61 54,91 83,22 45,42 50,72 38,92 15,23 81,53 24,83 66,02 80,22 98,42 46,82 17,03 82,53 98,14

GG gk 1971 2791 1512 7232 0152 9862 6682 7403 6223 3043 3853 4093 2524 3544 1284 1835

m2MEF1/45-5RDZEx1-t0,5LWS

L RK m 4 5 6 7 8 9 01 11 21 31 41 51 61 71 81 91

G+(22R.xam H) gk 4162 4992 2903 5713 9423 7133 0833 0443 8943 6163 5763 4373 7283 9293 0993 4904

G+(12R.xam H) gk 0182 5662 4572 9282 7982 0692 8103 4703 9213 4423 0033 6533 7443 7453 5063 6073

G+(21R.nim H) gk 696 107 496 107 917 347 077 208 638 439 679 9101 9901 7111 1421 5331

G+(11R.nim H) gk 176 216 216 426 446 076 896 137 567 368 509 749 7201 0911 7611 0621

3V)Rnim+Rxamx2(=mR 0402 0212 0812 5322 8822 0432 9832 9342 8842 8952 0562 3072 1972 4682 5492 5403

L Nk 45,0 95,0 56,0 07,0 57,0 18,0 68,0 19,0 79,0 01,1 61,1 22,1 23,1 34,1 05,1 26,1

MH.nim Nk 01,0 41,0 81,0 32,0 82,0 43,0 14,0 84,0 65,0 07,0 08,0 19,0 60,1 32,1 73,1 65,1

MH.xam Nk 24,0 16,0 18,0 40,1 72,1 25,1 77,1 40,2 23,2 86,2 79,2 72,3 26,3 99,3 13,4 86,4

S Nk 13,9 55,9 08,9 40,01 92,01 45,01 87,01 30,11 72,11 68,11 41,21 14,21 88,21 14,31 17,31 52,41

H.xam S Nk 64,7 87,7 40,8 62,8 54,8 36,8 08,8 69,8 11,9 34,9 95,9 57,9 00,01 82,01 44,01 27,01

H.nim S Nk 58,1 77,1 67,1 87,1 48,1 19,1 89,1 70,2 61,2 34,2 55,2 66,2 88,2 31,3 72,3 35,3

V(UP.xam RK )nim/m04= Nk 60,7 16,7 14,8 80,9 09,9 27,01 43,11 30,21 30,31 60,51 00,61 02,71 32,91 24,12 07,22 19,42

V(UP.xam RK )nim/m06= Nk 36,61 54,91 83,22 45,42 50,72 38,92 15,23 81,53 24,83 85,22 62,42 05,62 32,03 27,43 06,73 50,24

GG gk 1971 2791 2512 9232 9052 0962 6682 7403 8223 7563 6583 6504 0044 3874 3005 5935

End carriage: Travel wheel diameter ∅d - Travel wheel tread bwheel - Crane runway rail width brail : 160-65-50; 200-65-50; 250-55-70.

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m2MEF1/45-5RDZEx1-t0,5LWS

L RK m 02 12 22 32 42 52 62 72 82 92 03

G+(22R.xam H) gk 8734 4354 4964 3174 5884 0315 3125 4345 8155 9175 5406

G+(12R.xam H) gk 5604 9124 7734 5934 5654 8274 0184 9205 0115 9035 4365

G+(21R.nim H) gk 5461 3971 6491 9591 6212 4332 2142 9262 8072 5092 8223

G+(11R.nim H) gk 8751 5271 8781 0981 5502 0522 7232 2452 0262 6182 7313

xamx2(=mR R nim+ 3V)R 3633 5153 2763 9863 9583 4604 5414 4634 5444 4464 9694

L Nk 00,2 81,2 73,2 93,2 95,2 38,2 39,2 91,3 92,3 25,3 19,3

H.nim M Nk 95,1 08,1 20,2 31,2 73,2 80,2 12,2 44,2 85,2 08,2 80,3

H.xam M Nk 61,4 84,4 97,4 30,5 53,5 64,4 86,4 39,4 51,5 93,5 66,5

S Nk 38,41 06,51 04,61 74,61 33,71 87,61 51,71 71,81 45,81 64,91 79,02

H.xam S Nk 77,01 61,11 65,11 16,11 50,21 84,11 86,11 91,21 83,21 48,21 06,31

H.nim S Nk 60,4 44,4 48,4 68,4 82,5 03,5 74,5 89,5 61,6 26,6 73,7

P.xam U V( RK )nim/m04= Nk 62,23 07,83 57,84 14,02 98,22 80,72 55,82 02,43 79,53 92,04 23,05

P.xam U V( RK )nim/m06= Nk 41,16 23,93 30,44 14,44 25,84 04,35 32,55 79,16 54,46 53,17 65,87

GG gk 6666 1727 5987 7597 1368 2449 2679 43601 65901 94711 44031

m4MEF1/43,6-01RDZEx1-t3,6LWS

L RK m 02 12 22 32 42 52 62 72 82 92 03

G+(22R.xam H) gk 2474 2284 3894 5515 8715 9595 9416 3726 7556 5176 4396

G+(12R.xam H) gk 9435 8245 8855 9575 0875 3855 1775 3985 5716 1336 8456

G+(21R.nim H) gk 6571 8281 1891 7412 3612 9442 2362 0572 9203 2813 6933

G+(11R.nim H) gk 2171 1871 3391 6902 0112 4632 5452 3662 0492 1903 4033

3V)Rnim+Rxamx2(=mR 9493 6204 4814 4534 4734 4664 1584 2794 4525 9045 6265

L Nk 81,2 72,2 64,2 66,2 86,2 20,3 42,3 83,3 27,3 19,3 61,4

H.nim M Nk 47,1 09,1 51,2 14,2 45,2 03,2 45,2 37,2 30,3 52,3 25,3

H.xam M Nk 70,5 14,5 18,5 12,6 15,6 35,5 48,5 31,6 74,6 67,6 70,7

S Nk 42,71 26,71 24,81 72,91 73,91 10,91 78,91 34,02 37,12 54,22 54,32

H.xam S Nk 68,21 60,31 74,31 19,31 69,31 44,31 88,31 71,41 28,41 91,51 96,51

H.nim S Nk 83,4 65,4 59,4 63,5 14,5 75,5 99,5 62,6 19,6 62,7 67,7

P.xam U V( RK )nim/m04= Nk 77,04 55,54 64,12 67,42 61,52 34,13 89,53 46,83 05,64 13,15 43,75

P.xam U V( RK )nim/m06= Nk 72,04 77,24 94,64 77,05 12,15 47,85 74,46 44,86 09,57 94,97 04,68

GG gk 9527 9557 5818 7588 1398 55001 79701 97211 10421 91031 28831

m4MEF1/42,3-5RDZEx1-t2,3LWS

L RK m 02 12 22 32 42 52 62 72 82 92 03

G+(22R.xam H) gk 5813 3923 2043 4673 9683 6404 4214 9334 7144 5274 2394

G+(12R.xam H) gk 7592 3603 2713 7253 1363 2383 7093 1214 8914 3054 9074

G+(21R.nim H) gk 5431 7441 2551 1191 2102 6812 0622 2742 6452 3582 7503

G+(11R.nim H) gk 7821 8831 3941 3481 3491 6012 9712 9832 2642 7672 0792

3V)Rnim+Rxamx2(=mR 6942 1062 9072 7603 1713 5533 0343 4463 0273 7204 3324

L Nk 76,1 08,1 39,1 53,2 84,2 96,2 87,2 40,3 31,3 94,3 47,3

MH.nim Nk 03,1 44,1 95,1 09,1 50,2 08,1 88,1 50,2 61,2 73,2 35,2

MH.xam Nk 30,3 32,3 34,3 96,3 98,3 14,3 14,3 75,3 27,3 98,3 40,4

S Nk 61,11 96,11 32,21 40,41 75,41 41,41 94,41 84,51 38,51 52,71 12,81

H.xam s Nk 48,7 11,8 93,8 03,9 75,9 81,9 63,9 68,9 40,01 57,01 32,11

H.nim s Nk 23,3 85,3 48,3 47,4 00,5 69,4 31,5 26,5 97,5 05,6 89,6

P.xam U V( RK )nim/m04= Nk 20,62 25,82 79,03 30,84 03,12 31,52 64,62 99,03 91,33 69,93 79,54

P.xam U V( RK )nim/m06= Nk *83,44 52,23 *07,43 57,34 81,64 71,15 36,25 62,85 36,06 58,07 55,57

GG gk 4755 1995 9146 5487 5528 0798 0729 12101 32401 84611 86421

max. R - Max. wheel load without coefficient (deadweight + hoist load)min. R - Min. wheel load without coefficient (deadweight + hoist load)L, min. HM, max. HM- Drive inertia forces

S, max. HS, min. HS - Skewing forces with additional 10%max. Pu - Max. buffer force with vibration coefficient 1,25NPU=1 - Buffer against rigid stop

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m3MEF1/65,21-01RDZEx1-t5,21LWS

L RK m 4 5 6 7 8 9 01 11 21 31 41 51 61 71 81 91

G+(22R.xam H) gk 4364 7594 9815 3145 6165 0375 0985 7206 5816 8236 0646 7266 3076 8786 9507 0927

G+(12R.xam H) gk 1316 2456 1386 4907 8237 5647 4467 5977 6697 8118 8528 3348 5158 4968 0888 5119

G+(21R.nim H) gk 2271 6941 1631 1431 5431 5031 2431 7731 2541 3251 4951 9071 8371 2781 7102 6122

G+(11R.nim H) gk 1312 4181 8161 6551 7251 0641 5741 3941 2551 0161 9661 4771 4971 0291 7502 0522

3V)Rnim+Rxamx2(=mR 2614 6394 0005 5315 2725 0235 0545 4655 8175 0685 4995 1816 0526 5546 1766 7596

L Nk 46,0 96,0 57,0 78,0 99,0 40,1 61,1 62,1 04,1 25,1 46,1 18,1 88,1 60,2 52,2 15,2

H.nim M Nk 31,0 71,0 22,0 92,0 73,0 34,0 25,0 36,0 77,0 19,0 70,1 82,1 24,1 86,1 79,1 53,2

H.xam M Nk 63,0 06,0 78,0 42,1 76,1 30,2 25,2 20,3 16,3 12,4 38,4 55,5 01,6 98,6 07,7 36,8

S Nk 30,02 92,02 65,02 11,12 76,12 78,12 14,22 78,22 15,32 90,42 46,42 14,52 07,52 45,62 34,72 06,82

H.xam S Nk 87,41 75,51 05,61 71,71 77,71 11,81 85,81 79,81 24,91 38,91 02,02 76,02 98,02 73,12 88,12 15,22

H.nim S Nk 52,5 27,4 60,4 49,3 09,3 67,3 38,3 09,3 90,4 62,4 44,4 47,4 18,4 71,5 55,5 90,6

P.xam U V( RK )nim/m04= Nk 40,8 49,8 88,9 05,11 35,31 03,41 22,61 72,81 99,02 13,32 28,52 12,92 24,03 27,33 82,91 49,12

P.xam U V( RK )nim/m06= Nk 90,12 70,42 99,62 81,33 24,24 23,12 17,42 84,82 07,33 11,93 08,34 19,23 91,43 13,73 80,24 83,74

GG gk 8112 9032 9942 4092 6133 0643 1583 2914 5564 9705 1845 3406 0526 4686 3157 1738

m3MEF1/48-01RDZEx1-t8LWS

L RK m 4 5 6 7 8 9 01 11 21 31 41 51 61 71 81 91

G+(22R.xam H) gk 4263 4773 9883 3893 6604 2614 8724 7234 9444 0254 7854 2274 3884 1494 5505 5025

G+(12R.xam H) gk 4654 4374 2684 6694 5505 5515 5725 6235 0545 1255 9855 6275 7885 4495 9506 8026

G+(21R.nim H) gk 758 997 677 277 187 918 988 009 199 5301 9701 5911 9331 1831 2841 0261

G+(11R.nim H) gk 929 848 808 297 197 228 688 198 779 6101 7501 9611 9031 8431 6441 1851

3V)Rnim+Rxamx2(=mR 5103 2013 6713 0423 1033 9733 1843 8153 0363 2963 2573 1883 6304 9804 9914 4434

L Nk 95,0 56,0 07,0 57,0 18,0 98,0 00,1 30,1 61,1 32,1 92,1 44,1 36,1 86,1 18,1 89,1

H.nim M Nk 11,0 41,0 81,0 22,0 72,0 43,0 34,0 94,0 26,0 27,0 38,0 20,1 52,1 93,1 06,1 78,1

H.xam M Nk 05,0 47,0 00,1 72,1 75,1 29,1 33,2 66,2 31,3 35,3 49,3 94,4 90,5 35,5 70,6 76,6

S Nk 76,31 29,31 61,41 14,41 56,41 20,51 25,51 86,51 62,61 75,61 78,61 65,71 93,81 66,81 42,91 30,02

H.xam S Nk 52,11 96,11 20,21 92,21 35,21 08,21 21,31 62,31 06,31 97,31 89,31 53,41 97,41 59,41 62,51 76,51

H.nim S Nk 24,2 32,2 41,2 21,2 21,2 22,2 04,2 24,2 66,2 87,2 98,2 12,3 06,3 17,3 89,3 63,4

P.xam U V( RK )nim/m04= Nk 76,7 75,8 33,9 72,01 20,11 10,21 49,31 35,41 76,61 30,81 53,91 22,22 37,52 59,62 15,92 36,23

P.xam U V( RK )nim/m06= Nk 96,91 09,22 52,52 32,82 41,13 31,53 47,02 17,12 35,52 20,82 24,03 16,63 25,34 77,03 81,33 72,63

GG gk 4791 5512 5332 3152 3962 8592 8233 4443 7683 2904 2134 2184 8145 4165 2406 4166

m2MEF1/401-01RDZEx1-t01LWS

L RK m 4 5 6 7 8 9 01 11 21 31 41 51 61 71 81 91

G+(22R.xam H) gk 5734 6454 5764 0874 1784 4105 3705 7915 5725 5735 1655 7365 8385 7995 7506 1816

G+(12R.xam H) gk 1655 0675 7095 4206 4216 4726 7336 6646 5456 8466 6386 3196 3117 4727 4337 8547

G+(21R.nim H) gk 669 688 848 438 538 809 119 099 0301 8901 7521 8031 4941 5361 8761 7871

G+(11R.nim H) gk 3701 369 409 478 368 729 229 499 7201 1901 5421 2921 4741 1161 1561 7571

3V)Rnim+Rxamx2(=mR 4363 2504 1114 1714 1324 4734 4144 9454 6264 7374 6694 0505 6035 6055 3755 8275

L Nk 95,0 56,0 07,0 57,0 18,0 49,0 79,0 90,1 61,1 62,1 74,1 55,1 87,1 69,1 20,2 61,2

H.nim M Nk 11,0 41,0 71,0 12,0 62,0 43,0 93,0 05,0 95,0 07,0 29,0 50,1 43,1 06,1 57,1 00,2

H.xam M Nk 25,0 77,0 40,1 33,1 56,1 01,2 44,2 49,2 73,3 78,3 85,4 80,5 48,5 35,6 40,7 96,7

S Nk 14,61 66,61 19,61 51,71 93,71 89,71 51,81 07,81 20,91 84,91 24,02 67,02 28,12 46,22 19,22 55,32

H.xam S Nk 46,31 51,41 35,41 48,41 01,51 05,51 76,51 10,61 32,61 15,61 20,71 32,71 87,71 22,81 83,81 27,81

H.nim S Nk 77,2 15,2 83,2 13,2 92,2 84,2 84,2 96,2 97,2 79,2 04,3 35,3 40,4 24,4 35,4 38,4

P.xam U V( RK )nim/m04= Nk 76,7 75,8 33,9 72,01 20,11 09,21 45,31 94,51 27,61 37,81 86,22 50,42 17,82 60,23 71,33 72,93

P.xam U V( RK )nim/m06= Nk 96,91 09,22 52,52 32,82 41,13 24,73 90,02 72,32 46,52 13,92 75,73 84,04 05,25 37,53 87,63 95,93

GG gk 5791 5512 4332 2152 3962 3213 3423 7463 7783 2124 9984 0515 9195 7156 0276 3817

Loads and forces to DIN 15018Wheel loads/inertia forces/skewing forces/buffer forces/crane dead weight forces

End carriage: Travel wheel diameter ∅d - Travel wheel tread bwheel - Crane runway rail width brail : 160-65-50; 200-65-50; 250-55-70.

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m2MEF1/401-01RDZEx1-t01LWS

L RK m 02 12 22 32 42 52 62 72 82 92 03

G+(22R.xam H) gk 9166 4976 2796 1527 3137 5428 2548 4048 1278 7609 1949

G+(12R.xam H) gk 9267 4087 1897 0628 1238 2277 7297 8787 2918 4358 6598

G+(21R.nim H) gk 8702 1422 7042 6762 9272 9882 6803 0303 9333 9763 6904

G+(11R.nim H) gk 5402 5022 9632 5362 6862 0082 7992 0492 7423 1853 7993

3V)Rnim+Rxamx2(=mR 2445 8436 6756 1496 6107 5826 7847 7147 3387 7828 7488

L Nk 15,2 17,2 29,2 52,3 13,3 05,3 47,3 86,3 50,4 64,4 69,4

H.nim M Nk 99,1 72,2 65,2 89,2 71,3 47,2 40,3 01,3 15,3 59,3 54,4

H.xam M Nk 68,6 44,7 20,8 07,8 71,9 96,7 71,8 64,8 20,9 85,9 51,01

S Nk 63,32 12,42 90,52 84,62 67,62 71,52 01,62 68,52 13,72 98,82 48,03

H.xam S Nk 51,81 95,81 40,91 57,91 19,91 85,81 60,91 59,81 86,91 84,02 64,12

H.nim S Nk 12,5 26,5 50,6 37,6 58,6 95,6 40,7 19,6 36,7 14,8 83,9

P.xam U V( RK )nim/m04= Nk 41,22 27,52 59,82 98,53 41,73 95,04 69,64 32,54 46,45 79,26 12,93

P.xam U V( RK )nim/m06= Nk 26,74 08,15 58,55 43,46 01,66 17,17 12,67 60,57 37,28 01,49 9,601

GG gk 1738 4409 9279 22801 94011 65611 26421 25221 99431 16841 04561

m3MEF1/65,21-01RDZEx1-t5,21LWS

L RK m 02 12 22 32 42 52 62 72 82 92 03

G+(22R.xam H) gk 2967 1087 0997 0828 3538 2169 8279 45001 03401 65801 62211

G+(12R.xam H) gk 9319 0529 1449 2379 6089 5319 9429 3759 4499 76301 53701

G+(21R.nim H) gk 4042 7842 1562 8192 0792 4623 0633 7663 6204 6344 0974

G+(11R.nim H) gk 9142 6942 6562 9192 7692 0713 5623 1753 5293 4334 7864

3V)Rnim+Rxamx2(=mR 2146 5437 9757 0597 2308 7337 4358 5598 2449 8999 97401

L Nk 57,2 68,2 70,3 04,3 84,3 8,3 39,3 13,4 57,4 52,5 86,5

H.nim M Nk 71,2 73,2 86,2 21,3 33,3 99,2 12,3 36,3 11,4 46,4 31,5

H.xam M Nk 65,7 31,8 28,8 46,9 91,01 07,8 81,9 58,9 45,01 42,11 88,11

S Nk 35,72 20,82 19,82 33,03 46,03 26,92 11,03 6,13 23,33 82,53 79,63

H.xam S Nk 34,12 17,12 91,22 39,22 21,32 80,22 53,22 11,32 99,32 99,42 68,52

H.nim S Nk 01,6 13,6 27,6 04,7 25,7 45,7 67,7 94,8 33,9 92,01 11,11

P.xam U V( RK )nim/m04= Nk 11,62 98,72 91,23 06,83 69,93 05,84 26,15 58,95 19,63 30,24 68,54

P.xam U V( RK )nim/m06= Nk 22,25 14,45 65,95 63,86 48,07 42,77 97,97 65,09 55,001 18,511 1,921

GG gk 4519 4359 83201 94311 69511 18621 20131 56341 52851 39471 83981

m3MEF1/48-01RDZEx1-t8LWS

L RK m 02 12 22 32 42 52 62 72 82 92 03

G+(22R.xam H) gk 5075 7975 4885 5795 0616 1307 8217 5347 1847 8987 4618

G+(12R.xam H) gk 7946 8856 5766 5676 9496 8856 3866 8896 2307 4447 8077

G+(21R.nim H) gk 2002 4802 2612 5422 2242 2762 2672 2603 1013 3153 3773

G+(11R.nim H) gk 2691 2402 8112 9912 3732 6852 4762 3792 1103 7143 6763

3V)Rnim+Rxamx2(=mR 5374 3284 7094 5994 7715 0345 4255 8285 1785 5826 8456

L Nk 54,2 55,2 56,2 67,2 79,2 62,3 73,3 47,3 97,3 82,4 06,4

H.nim M Nk 69,1 41,2 33,2 35,2 48,2 35,2 27,2 70,3 22,3 76,3 10,4

H.xam M Nk 30,6 44,6 48,6 62,7 57,7 75,6 09,6 53,7 56,7 41,8 45,8

S Nk 65,02 00,12 14,12 58,12 77,22 49,12 73,22 77,32 79,32 88,52 01,72

H.xam S Nk 55,51 87,51 00,61 32,61 07,61 58,51 80,61 97,61 98,61 68,71 74,81

H.nim S Nk 10,5 22,5 14,5 26,5 70,6 90,6 92,6 89,6 80,7 20,8 36,8

P.xam U V( RK )nim/m04= Nk 83,12 09,22 56,42 74,62 70,03 14,63 54,83 49,64 53,84 65,95 72,86

P.xam U V( RK )nim/m06= Nk 53,64 35,84 36,05 46,25 62,75 70,56 90,86 02,67 41,77 91,09 71,79

GG gk 6618 1158 9388 4819 4099 77801 74211 85421 52621 27241 12351

max. R - Max. wheel load without coefficient (deadweight + hoist load)min. R - Min. wheel load without coefficient (deadweight + hoist load)L, min. HM, max. HM- Drive inertia forces

S, max. HS, min. HS - Skewing forces with additional 10%max. Pu - Max. buffer force with vibration coefficient 1,25NPU=1 - Buffer against rigid stop

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m3MEF1/44-5RDZEx2-t4x2LWS

L RK m 4 5 6 7 8 9 01 11 21 31 41 51 61 71 81 91

G+(22R.xam H) gk 6873 9014 9334 6154 1664 4874 4194 0405 3315 9725 8635 0545 2065 7865 8085 0395

G+(12R.xam H) gk 0633 0463 2483 8993 7214 7324 6534 3744 8554 7964 0874 7584 4005 4805 1025 9135

G+(21R.nim H) gk 5271 4941 5531 8621 5121 3811 0911 6121 4221 9921 7231 6531 2641 6051 1951 0861

G+(11R.nim H) gk 3841 1921 7711 8011 8601 7401 1601 2901 6011 4811 5121 7421 4531 9931 5841 6751

3V)Rnim+Rxamx2(=mR 7592 1153 1753 0363 0963 0573 0483 0493 7004 3514 0324 3034 4744 9554 5964 5384

L Nk 17,0 67,0 18,0 78,0 29,0 89,0 60,1 51,1 12,1 43,1 14,1 74,1 36,1 07,1 38,1 59,1

H.nim M Nk 31,0 91,0 52,0 03,0 63,0 24,0 15,0 16,0 96,0 48,0 59,0 70,1 82,1 34,1 36,1 58,1

H.xam M Nk 03,0 35,0 97,0 80,1 93,1 17,1 90,2 05,2 88,2 83,3 18,3 52,4 18,4 92,5 38,5 93,6

S Nk 91,41 44,41 86,41 29,41 71,51 24,51 97,51 02,61 84,61 70,71 93,71 96,71 04,81 47,81 03,91 88,91

H.xam S Nk 28,9 56,01 42,11 07,11 70,21 93,21 37,21 70,31 13,31 07,31 49,31 61,41 75,41 97,41 21,51 54,51

H.nim S Nk 73,4 97,3 44,3 22,3 01,3 30,3 60,3 31,3 71,3 73,3 54,3 35,3 38,3 59,3 81,4 34,4

P.xam U V( RK )nim/m04= Nk 27,8 39,9 99,01 97,11 20,31 90,41 35,51 23,71 46,81 62,12 86,22 29,32 31,72 07,82 70,13 73,33

P.xam U V( RK )nim/m06= Nk 53,32 51,72 20,13 54,43 63,83 99,02 43,32 27,62 41,92 43,43 75,73 42,04 49,03 24,23 97,43 79,63

GG gk 4532 4352 3172 0982 1703 1523 1253 1283 1204 9544 0964 0194 2245 6765 5806 5056

m2MEF1/661-01RDZEx1-t61LWS

L RK m 4 5 6 7 8 9 01 11 21 31 41 51 61 71 81 91

G+(22R.xam H) gk 7875 3816 3646 9076 8196 4117 2627 9347 2757 8487 8308 0518 9348 6558 0768 9888

G+(12R.xam H) gk 4177 6228 3858 3888 3319 0639 3359 0379 8789 07101 27301 39401 19701 41901 43011 85211

G+(21R.nim H) gk 2412 3481 9561 4751 5351 7351 1351 2851 9061 5871 9981 6491 8712 3422 2132 2942

G+(11R.nim H) gk 3962 4722 1102 7681 5871 3571 9171 7471 4571 2191 2102 6402 6622 2232 1832 2552

3V)Rnim+Rxamx2(=mR 4125 7145 8655 2275 2685 4006 9016 0526 3536 1066 0776 3686 6317 8327 9337 6457

L Nk 7,0 67,0 28,0 19,0 10,1 31,1 12,1 53,1 44,1 17,1 09,1 99,1 03,2 14,2 25,2 67,2

H.nim M Nk 41,0 91,0 32,0 03,0 73,0 54,0 35,0 56,0 67,0 10,1 12,1 73,1 47,1 49,1 61,2 35,2

H.xam M Nk 93,0 66,0 69,0 43,1 77,1 72,2 67,2 73,3 59,3 09,4 17,5 04,6 15,7 72,8 50,9 90,01

S Nk 31,52 93,52 56,52 80,62 55,62 90,72 74,72 90,82 25,82 20,03 68,03 92,13 37,23 32,33 37,33 38,43

H.xam S Nk 35,81 77,91 56,02 04,12 30,22 16,22 50,32 65,32 59,32 49,42 84,52 18,52 26,62 59,62 72,72 98,72

H.nim S Nk 06,6 26,5 00,5 86,4 25,4 84,4 24,4 35,4 75,4 80,5 83,5 84,5 11,6 82,6 64,6 49,6

P.xam U V( RK )nim/m04= Nk 77,8 67,9 67,01 69,11 97,31 17,51 43,71 30,02 98,12 81,72 37,03 64,23 64,64 78,02 50,22 92,62

P.xam U V( RK )nim/m06= Nk 25,32 26,62 20,03 89,43 94,02 46,32 67,62 44,13 28,53 68,74 44,75 11,63 31,34 03,54 25,74 24,25

GG gk 6332 6252 6172 3303 1733 4673 5404 8944 3184 5175 1236 5366 4767 5308 7938 1919

m4MEF1/42,3-5RDZEx2-t2,3x2LWS

L RK m 4 5 6 7 8 9 01 11 21 31 41 51 61 71 81 91

G+(22R.xam H) gk 2713 8443 8463 3083 1393 1404 8314 1524 4634 4444 3554 8964 9374 2584 9005 3405

G+(12R.xam H) gk 3182 3503 7223 3633 7743 6753 2663 8673 4783 7493 1504 1914 8224 6334 0944 0254

G+(21R.nim H) gk 2941 7031 9911 5311 8901 0801 4701 3011 7411 7611 5221 6231 9231 8041 5351 2451

G+(11R.nim H) gk 6721 5211 9301 099 569 559 559 989 7301 0601 0211 3221 8221 8031 5341 3441

3V)Rnim+Rxamx2(=mR 2942 8792 8303 7903 7513 7123 6723 0733 4743 9353 0563 3183 1483 8693 6514 3814

L Nk 17,0 67,0 18,0 78,0 29,0 89,0 30,1 11,1 12,1 72,1 63,1 15,1 45,1 56,1 28,1 48,1

H.nim M Nk 31,0 91,0 52,0 03,0 73,0 34,0 05,0 06,0 17,0 18,0 59,0 31,1 32,1 14,1 56,1 77,1

H.xam M Nk 92,0 15,0 67,0 30,1 23,1 26,1 49,1 03,2 96,2 50,3 74,3 49,3 03,4 67,4 82,5 56,5

S Nk 00,21 42,21 94,21 37,21 89,21 32,31 74,31 68,31 82,41 55,41 00,51 76,51 97,51 13,61 90,71 02,71

H.xam S Nk 32,8 49,8 54,9 58,9 81,01 74,01 27,01 20,11 23,11 35,11 28,11 12,21 23,21 26,21 50,31 41,31

H.nim S Nk 77,3 03,3 40,3 88,2 08,2 67,2 57,2 48,2 69,2 20,3 81,3 64,3 74,3 96,3 40,4 60,4

P.xam U V( RK )nim/m04= Nk 27,8 39,9 99,01 97,11 20,31 90,41 01,51 76,61 46,81 98,91 88,12 07,42 33,52 86,72 99,03 74,13

P.xam U V( RK )nim/m06= Nk 53,32 51,72 20,13 54,43 63,83 99,02 36,22 45,52 41,92 12,13 97,53 76,14 28,24 64,13 27,43 81,53

GG gk 3542 3362 3182 1992 1713 2533 9253 1183 2214 8134 9464 8315 4225 4065 9616 8426

Loads and forces to DIN 15018Wheel loads/inertia forces/skewing forces/buffer forces/crane dead weight forces

End carriage: Travel wheel diameter ∅d - Travel wheel tread bwheel - Crane runway rail width brail : 160-65-50; 200-65-50; 250-55-70.

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m4MEF1/42,3-5RDZEx2-t2,3x2LWS

L RK m 02 12 22 32 42 52 62 72 82 92 03

G+(22R.xam H) gk 6735 2645 4455 7085 4385 2216 6146 3446 3466 9696 6996

G+(12R.xam H) gk 4594 8305 6115 8735 2045 3475 5306 0606 8526 1856 6066

G+(21R.nim H) gk 6981 1691 3202 8622 9722 1552 1382 5482 3303 8433 4633

G+(11R.nim H) gk 1181 5781 7391 3812 3912 6542 5372 8472 5392 9423 4623

3V)Rnim+Rxamx2(=mR 5704 9774 3784 2125 6325 5084 6006 2306 0926 6176 3476

L Nk 92,2 83,2 74,2 77,2 97,2 41,3 94,3 15,3 47,3 21,4 51,4

H.nim M Nk 38,1 99,1 61,2 05,2 36,2 93,2 07,2 28,2 70,3 14,3 55,3

H.xam M Nk 01,5 54,5 18,5 92,6 16,6 66,5 40,6 03,6 46,6 00,7 82,7

S Nk 58,71 32,81 95,81 88,91 79,91 16,91 49,02 30,12 39,12 14,32 15,32

H.xam S Nk 71,31 83,31 85,31 52,41 23,41 28,31 05,41 65,41 20,51 77,51 38,51

H.nim S Nk 86,4 58,4 10,5 36,5 56,5 97,5 44,6 74,6 19,6 46,7 86,7

P.xam U V( RK )nim/m04= Nk 15,05 84,12 67,22 29,72 92,82 68,53 94,24 81,34 56,94 74,85 29,85

P.xam U V( RK )nim/m06= Nk 27,44 35,64 73,84 64,45 19,45 92,46 22,37 86,37 20,87 81,88 30,98

GG gk 7377 6308 0238 6339 8049 27501 71711 69711 96521 74831 03931

m3MEF1/44-5RDZEx2-t4x2LWS

L RK m 02 12 22 32 42 52 62 72 82 92 03

G+(22R.xam H) gk 7616 7336 0156 2456 7276 4496 9317 8447 2857 3008 2728

G+(12R.xam H) gk 5765 2485 3106 2406 4226 0156 4076 0107 1417 7557 4287

G+(21R.nim H) gk 2491 7802 6322 7422 1142 8162 7972 9803 9023 7163 4783

G+(11R.nim H) gk 3581 7991 7412 7512 1232 0252 8962 0992 9013 2153 7673

3V)Rnim+Rxamx2(=mR 5954 1245 5365 3665 4985 7535 6446 6486 4107 3657 2197

L Nk 92,2 84,2 76,2 07,2 09,2 81,3 04,3 67,3 19,3 14,4 27,4

H.nim M Nk 38,1 80,2 53,2 84,2 77,2 74,2 37,2 90,3 13,3 67,3 90,4

H.xam M Nk 17,5 12,6 17,6 80,7 95,7 84,6 88,6 53,7 17,7 02,8 16,8

S Nk 88,91 86,02 05,12 06,12 84,22 16,12 74,22 78,32 54,42 73,62 95,72

H.xam S Nk 90,51 25,51 59,51 30,61 05,61 66,51 21,61 38,61 41,71 11,81 37,81

H.nim S Nk 97,4 61,5 55,5 75,5 89,5 59,5 53,6 40,7 13,7 62,8 68,8

P.xam U V( RK )nim/m04= Nk 15,05 59,22 83,62 08,62 34,03 15,63 55,04 90,05 46,35 37,46 02,57

P.xam U V( RK )nim/m06= Nk 27,44 06,84 45,25 50,35 56,75 22,56 66,17 83,87 67,18 60,59 47,201

GG gk 7367 3628 6098 8898 3869 29501 83311 73521 14031 98641 73751

m2MEF1/661-01RDZEx1-t61LWS

L RK m 02 12 22 32 42 52 62 72 82 92 03

G+(22R.xam H) gk 6149 0079 0599 61201 06201 18611 41811 21121 14221 52521 07921

G+(12R.xam H) gk 79211 48511 63811 40121 05121 41111 44211 73511 46611 54911 88321

G+(21R.nim H) gk 5472 5992 4123 2543 0743 3763 0873 5504 2614 5244 2584

G+(11R.nim H) gk 0872 4203 8323 1743 4843 6753 2863 2593 7504 0234 5474

3V)Rnim+Rxamx2(=mR 9187 3908 3338 1958 7268 3288 6498 5329 6539 2369 07001

L Nk 70,3 93,3 76,3 79,3 10,4 12,4 63,4 07,4 48,4 61,5 96,5

H.nim M Nk 93,2 08,2 02,3 36,3 28,3 03,3 55,3 89,3 52,4 96,4 03,5

H.xam M Nk 59,8 98,9 97,01 17,11 23,21 83,01 89,01 57,11 53,21 11,31 10,41

S Nk 27,33 90,53 92,63 85,73 37,73 43,53 09,53 32,73 87,73 70,93 11,14

H.xam S Nk 56,62 83,72 30,82 17,82 38,82 48,62 51,72 48,72 41,82 18,82 58,92

H.nim S Nk 70,7 17,7 62,8 78,8 09,8 05,8 57,8 93,9 46,9 62,01 62,11

P.xam U V( RK )nim/m04= Nk 51,23 13,83 54,44 03,25 71,35 51,85 56,06 60,17 84,57 81,14 19,54

P.xam U V( RK )nim/m06= Nk 25,95 48,76 35,47 54,08 03,18 85,78 75,19 31,99 99,201 41,311 62,921

GG gk 83201 30311 83221 34231 46331 44041 02541 65651 42161 51271 55981

max. R - Max. wheel load without coefficient (deadweight + hoist load)min. R - Min. wheel load without coefficient (deadweight + hoist load)L, min. HM, max. HM- Drive inertia forces

S, max. HS, min. HS - Skewing forces with additional 10%max. Pu - Max. buffer force with vibration coefficient 1,25NPU=1 - Buffer against rigid stop

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m4MEF1/43,6-01RDZEx2-t3,6x2LWS

L RK m 4 5 6 7 8 9 01 11 21 31 41 51 61 71 81 91

G+(22R.xam H) gk 3574 9515 5445 8075 2295 7706 3326 2836 3256 1666 7976 7696 1307 5027 6837 5757

G+(12R.xam H) gk 1895 5646 3086 0017 1437 7157 9867 1587 2008 9418 2928 8648 8358 6178 1098 3909

G+(21R.nim H) gk 4312 5281 6361 7751 3351 9841 4841 2051 4351 0851 6361 8371 2471 4681 7991 4412

G+(11R.nim H) gk 4942 4012 0681 4671 0961 1261 7951 9951 7161 1561 7961 0971 6871 0091 6202 7612

3V)Rnim+Rxamx2(=mR 9824 4815 8425 3835 5945 8655 8665 8775 2985 4106 1416 1236 6636 2656 0776 3996

L Nk 38,0 98,0 49,0 60,1 71,1 32,1 23,1 24,1 25,1 36,1 57,1 19,1 59,1 31,2 13,2 15,2

H.nim M Nk 61,0 22,0 82,0 63,0 54,0 25,0 16,0 27,0 48,0 89,0 41,1 43,1 64,1 27,1 00,2 23,2

H.xam M Nk 73,0 66,0 99,0 93,1 48,1 82,2 77,2 13,3 98,3 05,4 41,5 98,5 54,6 62,7 11,8 99,8

S Nk 50,12 13,12 85,12 31,22 95,22 98,22 03,32 57,32 22,42 27,42 52,52 99,52 71,62 89,62 38,72 57,82

H.xam S Nk 47,41 69,51 18,61 85,71 12,81 66,81 11,91 45,91 49,91 33,02 17,02 81,12 73,12 58,12 53,22 78,22

H.nim S Nk 13,6 53,5 77,4 55,4 83,4 32,4 91,4 12,4 82,4 93,4 45,4 18,4 08,4 31,5 84,5 88,5

P.xam U V( RK )nim/m04= Nk 84,01 47,11 13,31 16,51 29,71 45,91 25,12 05,32 08,52 51,82 94,03 94,33 95,43 80,54 93,12 96,42

P.xam U V( RK )nim/m06= Nk 68,82 32,43 66,04 84,32 38,72 07,03 59,43 64,93 27,34 08,05 28,65 90,73 78,73 95,24 73,64 86,05

GG gk 2682 3503 4423 9463 6893 4024 3054 4384 6715 1455 2295 3646 7956 5817 0187 9748

m2MEF1/45-5RDZEx2-t5x2LWS

L RK m 4 5 6 7 8 9 01 11 21 31 41 51 61 71 81 91

G+(22R.xam H) gk 3554 4394 3025 8045 4755 4375 1885 3995 3516 0526 6736 4056 1956 6576 7486 5796

G+(12R.xam H) gk 2404 5734 1164 2974 9394 4805 9125 1235 2745 2655 1865 3085 4885 4406 0316 4526

G+(21R.nim H) gk 6102 7271 9451 4341 0631 4331 2331 1231 0831 1931 3441 7051 8351 4561 1071 0971

G+(11R.nim H) gk 2471 8941 0531 6521 8911 4811 0911 6811 0521 6621 1231 9831 2241 0451 8851 8761

3V)Rnim+Rxamx2(=mR 7353 8714 8324 7924 7534 5444 1454 7064 2574 3284 0494 8605 5415 1335 2245 6655

L Nk 17,0 67,0 18,0 78,0 29,0 00,1 90,1 51,1 82,1 43,1 54,1 65,1 36,1 08,1 88,1 10,2

H.nim M Nk 41,0 91,0 42,0 03,0 53,0 34,0 15,0 95,0 27,0 28,0 59,0 11,1 42,1 84,1 46,1 78,1

H.xam M Nk 13,0 55,0 38,0 31,1 54,1 38,1 52,2 56,2 81,3 36,3 61,4 27,4 32,5 29,5 74,6 21,7

S Nk 39,61 81,71 24,71 76,71 19,71 72,81 76,81 49,81 45,91 38,91 13,02 38,02 51,12 29,12 92,22 88,22

H.xam S Nk 08,11 87,21 84,31 10,41 44,41 68,41 42,51 45,51 69,51 22,61 55,61 09,61 31,71 75,71 28,71 61,81

H.nim S Nk 31,5 04,4 49,3 66,3 74,3 14,3 34,3 04,3 85,3 16,3 67,3 39,3 20,4 53,4 74,4 27,4

P.xam U V( RK )nim/m04= Nk 27,8 39,9 99,01 97,11 20,31 84,41 79,51 23,71 79,91 23,12 72,32 17,52 02,72 25,03 40,23 68,43

P.xam U V( RK )nim/m06= Nk 53,32 51,72 20,13 54,43 63,83 26,12 81,42 27,62 33,13 84,43 40,93 74,34 10,13 82,43 27,53 49,73

GG gk 3532 4352 3172 0982 1703 6333 2263 1283 5524 9644 1284 3025 5345 4995 6626 7966

Loads and forces to DIN 15018Wheel loads/inertia forces/skewing forces/buffer forces/crane dead weight forces

End carriage: Travel wheel diameter ∅d - Travel wheel tread bwheel - Crane runway rail width brail : 160-65-50; 200-65-50; 250-55-70.

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L RK m 02 12 22 32 42 52 62 72 82 92 03

G+(22R.xam H) gk 6037 3047 9757 7677 3087 8218 4338 9758 6868 3929 4759

G+(12R.xam H) gk 8276 1286 4996 9717 3127 7267 0387 2708 6718 9778 7509

G+(21R.nim H) gk 7512 1222 9632 0352 2452 8582 4403 0723 9533 1593 6124

G+(11R.nim H) gk 2602 7212 5722 6342 8442 8572 2492 8613 6523 3483 7014

3V)Rnim+Rxamx2(=mR 7935 1916 6046 7366 9666 4026 3837 6967 6287 2268 5898

L Nk 84,2 75,2 77,2 79,2 00,3 14,3 46,3 39,3 40,4 67,4 90,5

H.nim M Nk 79,1 51,2 34,2 37,2 88,2 76,2 69,2 92,3 05,3 61,4 35,4

H.xam M Nk 45,6 30,7 26,7 22,8 66,8 05,7 99,7 15,8 39,8 46,9 41,01

S Nk 12,32 26,32 44,42 23,52 44,52 38,42 47,52 38,62 82,72 60,03 23,13

H.xam S Nk 78,71 21,81 65,81 30,91 21,91 43,81 18,81 83,91 26,91 30,12 86,12

H.nim S Nk 43,5 05,5 88,5 92,6 23,6 94,6 39,6 54,7 66,7 30,9 46,9

P.xam U V( RK )nim/m04= Nk 48,22 85,42 08,72 20,23 57,23 86,04 19,64 59,35 96,65 53,67 74,14

P.xam U V( RK )nim/m06= Nk 74,84 55,05 13,45 83,95 61,06 18,17 81,67 60,28 94,58 57,301 40,411

GG gk 3528 2758 7129 2199 60001 17311 05121 98031 77431 66851 45961

m4MEF1/43,6-01RDZEx2-t3,6x2LWS

L RK m 02 12 22 32 42 52 62 72 82 92 03

G+(22R.xam H) gk 6408 6518 1348 8168 9868 4389 76201 20601 81011 40311 40911

G+(12R.xam H) gk 9429 1639 7369 5289 7989 0419 0759 2099 21301 59501 29111

G+(21R.nim H) gk 4242 9942 2472 9982 4492 6213 4353 9383 3324 8944 9705

G+(11R.nim H) gk 1342 1052 0472 4982 5392 3103 1243 6273 5114 0834 9594

3V)Rnim+Rxamx2(=mR 3756 6057 0587 9708 5518 7637 1398 6539 3989 95201 54011

L Nk 68,2 89,2 82,3 94,3 65,3 57,3 62,4 46,4 21,5 54,5 61,6

H.nim M Nk 52,2 64,2 78,2 02,3 04,3 59,2 74,3 19,3 34,4 58,4 45,5

H.xam M Nk 20,8 26,8 64,9 71,01 67,01 01,9 09,9 06,01 33,11 69,11 57,21

S Nk 61,82 36,82 49,92 28,03 11,13 81,92 31,13 10,33 19,43 02,63 79,83

H.xam S Nk 20,22 03,22 00,32 84,32 66,32 80,22 80,32 41,42 21,52 97,52 91,72

H.nim S Nk 41,6 33,6 49,6 43,7 54,7 01,7 50,8 78,8 97,9 14,01 87,11

P.xam U V( RK )nim/m04= Nk 29,03 06,33 13,93 29,34 19,54 55,15 00,26 78,47 36,24 54,54 47,15

P.xam U V( RK )nim/m06= Nk 91,85 21,16 66,96 81,47 15,57 27,97 92,39 64,201 25,711 17,721 91,051

GG gk 0569 71001 05011 63711 56911 31621 29241 96551 87171 77281 43602

max. R - Max. wheel load without coefficient (deadweight + hoist load)min. R - Min. wheel load without coefficient (deadweight + hoist load)L, min. HM, max. HM- Drive inertia forces

S, max. HS, min. HS - Skewing forces with additional 10%max. Pu - Max. buffer force with vibration coefficient 1,25NPU=1 - Buffer against rigid stop

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L RK m 4 5 6 7 8 9 01 11 21 31 41 51 61 71 81 91

G+(22R.xam H) gk 7485 6336 9766 3596 1817 9937 6557 6477 8787 2618 7638 8158 3868 5388 0309 2529

G+(12R.xam H) gk 8147 3108 5248 8478 3109 9529 8349 6469 3979 09001 60301 66401 73601 59701 69901 22211

G+(21R.nim H) gk 9062 6122 1791 4281 8371 0171 1761 0071 9961 8581 7691 5302 7212 5122 3532 3252

G+(11R.nim H) gk 6013 5062 6822 7802 1691 2091 8381 6481 7281 9691 5602 1212 2022 1822 0142 3752

3V)Rnim+Rxamx2(=mR 1925 0936 4546 7356 1366 7576 4386 9796 6607 0637 8657 3177 3887 2408 3628 3258

L Nk 98,0 59,0 10,1 80,1 71,1 82,1 53,1 84,1 65,1 28,1 10,2 41,2 92,2 44,2 46,2 78,2

H.nim M Nk 71,0 42,0 03,0 73,0 44,0 35,0 16,0 37,0 38,0 80,1 03,1 94,1 17,1 59,1 62,2 36,2

H.xam M Nk 04,0 17,0 60,1 74,1 29,1 54,2 69,2 06,3 81,4 41,5 00,6 97,6 46,7 05,8 84,9 55,01

S Nk 10,62 72,62 35,62 88,62 62,72 87,72 01,82 96,82 50,92 25,03 93,13 99,13 96,23 53,33 72,43 53,53

H.xam S Nk 02,81 96,91 37,02 55,12 22,22 68,22 23,32 68,32 52,42 72,52 58,52 82,62 47,62 71,72 27,72 43,82

H.nim S Nk 18,7 85,6 08,5 33,5 40,5 29,4 87,4 38,4 08,4 52,5 45,5 17,5 59,5 81,6 55,6 10,7

P.xam U V( RK )nim/m04= Nk 81,11 08,21 03,41 88,51 69,71 84,02 90,22 47,42 35,62 47,13 47,73 24,54 31,12 12,32 37,62 00,13

P.xam U V( RK )nim/m06= Nk 48,13 88,63 33,12 69,32 09,72 05,23 92,63 57,14 09,54 60,06 88,83 27,24 38,54 09,84 79,25 72,85

GG gk 0892 0713 1633 2163 3983 0724 3054 8394 7915 9706 5076 0417 9467 6218 9878 0759

G1 gk 353 644 935 266 008 689 0011 5131 2441 9761 0991 5022 7542 3962 2203 0143

f/RKL N )008.nim( 3652 4551 9401 338 429 238 078 718 748 618 688 528 198 148 038 838

vv zH 12,21 94,8 63,6 32,5 41,5 85,4 34,4 80,4 69,3 27,3 17,3 44,3 54,3 32,3 01,3 10,3

vh zH 41,73 58,52 51,91 70,51 82,21 92,01 36,8 54,7 24,6 56,5 30,5 64,4 10,4 06,3 72,3 89,2

Loads and forces to DIN 15018Wheel loads/inertia forces/skewing forces/buffer forces/crane dead weight forces

End carriage: Travel wheel diameter ∅d - Travel wheel tread bwheel - Crane runway rail width brail: 160-65-50; 200-65-50; 250-55-70.

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m3MEF1/48-01RDZEx2-t8LWS

L RK m 02 12 22 32 42 52 62 72 82 92 03

G+(22R.xam H) gk 9089 61001 69001 90301 12601 33021 81321 67221 04521 32821 76231

G+(12R.xam H) gk 37311 28511 46611 97811 39121 80211 09411 24411 30711 38911 42421

G+(21R.nim H) gk 7382 1003 2403 9123 0053 6073 0693 9883 6214 3834 3084

G+(11R.nim H) gk 4682 2203 8503 1323 7053 8853 1483 6673 3004 9524 9764

3V)Rnim+Rxamx2(=mR 6008 7029 7829 6459 0499 2898 63501 85401 19701 94111 42711

L Nk 62,3 94,3 65,3 97,3 51,4 63,4 86,4 16,4 19,4 32,5 57,5

H.nim M Nk 45,2 78,2 70,3 44,3 59,3 14,3 28,3 09,3 13,4 67,4 83,5

H.xam M Nk 54,9 92,01 59,01 38,11 68,21 88,01 66,11 01,21 78,21 56,31 85,41

S Nk 45,43 94,53 08,53 08,63 23,83 19,53 81,73 09,63 70,83 43,93 73,14

H.xam S Nk 52,72 87,72 99,72 45,82 53,92 63,72 30,82 29,72 45,82 02,92 42,03

H.nim S Nk 92,7 17,7 18,7 62,8 79,8 55,8 51,9 89,8 35,9 41,01 31,11

P.xam U V( RK )nim/m04= Nk 38,83 56,34 37,54 48,15 46,95 85,56 21,67 69,37 14,04 06,34 00,84

P.xam U V( RK )nim/m06= Nk 97,86 00,47 93,57 10,08 92,09 25,59 55,301 7,101 57,011 31,121 16,831

GG gk 38801 12611 06811 83621 12831 53541 90651 37351 27361 84471 37191

G1 gk 5693 1334 9444 5384 4245 4465 9716 8506 6556 1907 1597

f/RKL N )008.nim( 448 028 438 708 338 898 609 029 039 229 979

vv zH 19,2 87,2 47,2 16,2 75,2 15,2 54,2 34,2 73,2 03,2 92,2

vh zH 24,5 39,4 95,4 12,4 78,3 63,3 21,3 59,3 86,3 44,3 12,3

max. R - Max. wheel load without coefficient (deadweight + hoist load)min. R - Min. wheel load without coefficient (deadweight + hoist load)L, min. HM, max. HM- Drive inertia forces

S, max. HS, min. HS - Skewing forces with additional 10%max. Pu - Max. buffer force with vibration coefficient 1,25NPU=1 - Buffer against rigid stop

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ZKKE - design 1

12) 1

3)

lan

2

12) 1

3)

lan

1

1)

7)Lk

a

4)Lk

r

3)

3)

5) 500

6) g5) y

2)X

b sc

hi

100

U

200

150

bmin

e kt

I (ek

t)

1000

30

-200

2035

6016

.ep

s

Cra

ne r

unw

ay g

ird

er 2

Cra

ne s

ide

2

Cra

ne r

unw

ay g

ird

er 1

Cra

ne s

ide

1

Trac

k ga

uge

dim

ensi

on

Ground dimension

Hook path

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20356017.eps

H

X

1000max.150

max.320>

100

>50

The dimensions given in this document were calculated on the basis ofcertain assumptions. Non-standard dimensions may result in individual cases.The exact dimensions are calculated by computer when an order is placed.

General information

- Technical data for other hoisting classes, loading groups and groups of mecha-nisms on request.

- The dimensions given are rated dimensions. Corresponding tolerances must beconsidered. They may result in non-standard dimensions.

- Overall dimensions and weights refer to the basic crab design. Non-standarddimensions must be checked by static calculation

- Higher hook paths increase lan1 and lan2. The approach dimensions refer to thehighest hook position.

- Min. wheel base 2500 mm (smaller wheel base on request).

- For raised cranes, the impact on the end carriages and the approach dimensi-ons must be checked.

1) Check mounting possibilities ( bmin = min. lateral crane clearance dimension).2) Crane power supply line on crane runway girder.3) Dimenstion > 150 or 200 modification of lan1 and lan2.4) Permissible track gauge dimension tolerance of crane runway:

for Lkr £ 15 m: ± 5 mmfor Lkr > 15 m: ± (5 + 0,25 (Lkr – 15)) mmaccording to DIN 4132, with Lkr in [m].

5) According to UVV BGV D6 (VBG 9) a minimum safety distance of 500 mm must be maintained betweenthe mobile and stationary crane parts. An exception to this is the bottom block suspended from therope.

6) When an operating limit switch is fitted, hook dimension C or g are increased:2/1 reeving: + 50 mm4/1 reeving: + 20 mm

7) Lka may have to be changed for larger drum lengths.

Height of the loop for KBK 25 (trailing cable) ≤ 1050 mm(from top edge of crane to lower cable loop).

∇ = Top edge of crane runway rail

ZKKE with KBK25 (trailing cable)

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Notizen

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Notizen

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Prin

ted

in G

erm

any

DZE

/090

605/

1T

Demag Cranes & Components GmbHKrane

Postfach 67 · D-58286 WetterTelefon (02335) 92-7919Telefax (02335) 9223 39E-Mail [email protected]

Reproduction in whole or in part only with prior consent of Demag Cranes & Components GmbH, D-58286 Wetter Not liable for errors or omissions. Subject to change.