Ferro Cement

31
FERRO CEMENT BUILDING TECHNOLOGY AND MANAGEMENT

Transcript of Ferro Cement

Page 1: Ferro Cement

FERRO CEMENT

BUILDING TECHNOLOGY AND MANAGEMENT

Page 2: Ferro Cement

Definition

“Ferro cement is a type of thin wall

reinforced concrete, commonly constructed

of hydraulic cement mortar, reinforced with

closely spaced layers of continuous and

relatively small size wire mesh. The mesh

may be made of metallic or other suitable

materials”

-ACI Committee 549, 1980

2

Page 3: Ferro Cement

• Cement mortar is reinforced with layers of

continuous and small diameter wire meshes

• Mortar provides the mass and wire mesh

imparts tensile strength and ductility

• Italian engineer Pier Liugie Nervi is credited

with inventing ferro cement in the 1940’s

Ferro cement

3

Page 4: Ferro Cement

Materials used in Ferro cement

• Cement mortar mix

• Skeleton steel

• Steel mesh reinforcement or Fibre-

reinforced polymeric meshes

4

Page 5: Ferro Cement

5

Typical section of Ferro cement

Page 6: Ferro Cement

Cement mortar mix

• OPC and fine aggregate matrix is used

• The matrix constitutes 95% of the

composite and governs its behavior

• FA (sand), occupies 60 to 75% of the volume

of the mortar

• Plasticizers and other admixtures are used

6

Page 7: Ferro Cement

Mix Proportions

• Sand: cement ratio (by mass) 1.5 to 2.5

• Water: cement ratio (by mass) 0.35 to 0.60

7

Page 8: Ferro Cement

Skeleton steel

• Forms the skeleton of the structure

• 3 to 8 mm steel rods are used

• Used in the form of tied reinforcement or

welded wire fabric

• Used to impart structural strength in case

of boats, barges etc

• Reinforcement should be free from dust,

rust and other impurities

8

Page 9: Ferro Cement

Steel mesh reinforcement

• Consists of galvanized steel wires of

diameter 0.5 to 1.5 mm, spaced at 6 to

20mm centre to centre

• Available as woven/interlocking mesh and

welded mesh

• Welded wire mesh has hexagonal or

rectangular openings

• Expanded-metal lath is also used

9

Page 10: Ferro Cement

10

Types of Wire Meshes

Page 11: Ferro Cement

11

Chicken wire mesh

Page 12: Ferro Cement

12

Expanded Metal Lath

Page 13: Ferro Cement

Fibre-reinforced Polymeric meshes

Made from carbon, glass etc.

Advantages:

I. High corrosion resistance

II. High strength

III. Lower unit weight

IV. Easy to handle

V. Good fatigue behavior

13

Page 14: Ferro Cement

Disadvantages:

I. High cost

II. Low shear strength

III. Low ductility

IV. Susceptibility to stress rupture failure

14

Fibre-reinforced Polymeric meshes

Page 15: Ferro Cement

15

Typical cross-sections of Ferro cement(Source: Naaman 1999)

Page 16: Ferro Cement

Ferro cement Construction

• Container for water treatment

Container for water treatment.flv

16

Page 17: Ferro Cement

Behavior of Ferro cement in Tension

17

RC in tension Ferro cement in tension

(Source: Naaman 1999)

Page 18: Ferro Cement

Advantages of Ferro cement

• High ductility

• High resistance to cracking width

• Ability to undergo large deflection

• Improved impact resistance and toughness

• Good fire resistance

• Good impermeability

• Low strength to weight ratio

• Low maintenance costs

18

Page 19: Ferro Cement

Construction Methods for Ferro cement

• Skeletal Armature Method

• Closed Mould Method

• Integral Mould Method

• Open Mould Method

19

Page 20: Ferro Cement

Skeletal Armature Method

20

(Source: Naaman 1999)

Page 21: Ferro Cement

Closed Mould Method

21

(Source: Naaman 1999)

Page 22: Ferro Cement

Integral Mould Method

22

(Source: Naaman 1999)

Page 23: Ferro Cement

Integral mould

• C:\Users\CIVIL\Downloads\video (1).flv

• C:\Users\CIVIL\Downloads\video (2).flv

23

Page 24: Ferro Cement

Open Mould Method

24

(Source: Naaman 1999)

Page 25: Ferro Cement

Applications of Ferro cement

• Marine applications

• Water supply and sanitation

• Agricultural

• Residential buildings

• Rural energy

• Other structures

25

Page 26: Ferro Cement

1. Marine Applications

• Boats, fishing vessels, barges, cargo tugs,

catamarans, yachts and flotation buoys

• Key criteria for marine applications: light

weight, impact resistance, thickness and

water tightness

26

Page 27: Ferro Cement

27Boat with Ferro-cement hull

Page 28: Ferro Cement

2. Water supply and sanitation

Water tanks, sedimentation tanks, swimming

pool linings, well casings, septic tanks etc.

3. Agricultural

Grain storage bins, silos, canal linings, pipes,

shells for fish and poultry farms

4. Residential Buildings

Houses, community centers, precast housing

elements, corrugated roofing sheets, wall

panels etc.28

Page 29: Ferro Cement

29

Ferro cement structure for roofing

Page 30: Ferro Cement

5. Rural Energy

Biogas digesters, biogas holders,

incinerators, panels for solar energy

collectors etc.

6. Other structures

Bus shelters, industrial shelters, pedestrian

bridges, skateboard rings, sculptures etc.

30

Page 31: Ferro Cement

31

Reference

o Naaman, AE, Ferrocement & Laminated

Cementitious Composites, Techno Press

3000

o Santhakumar, AR, Concrete Technology,

Oxford University Press

o Gambhir, ML, Concrete Technology: Theory

and Practice, McGraw Hill

o Shetty, MS, Concrete Technology, S Chand

Publishers