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![Page 1: The New Test Technology for Evaluating the Anti-cracking Performance of Concrete Runway of the Airport under Construction China Airport Construction Group.](https://reader030.fdocuments.us/reader030/viewer/2022032517/56649c895503460f94941d36/html5/thumbnails/1.jpg)
The New Test Technology for Evaluating the Anti-cracking
Performance of Concrete Runway of the Airport under Construction
• China Airport Construction Group Corporation of CAAC
LIU YAN
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Contents
Introduction
New method- Dumbbell Method
Comparative Study of Three Methods
Conclusion
11
22
33
55
Engineering Application44
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Introduction
This presentation introduces one new test technology for evaluating the anti-cracking performance of concrete runway of the airport under construction.
The cracking performance of concrete testing under constraint condition is more close to the condition of concrete at job site.
The lack of a standard test for early shrinkage cracking resistance has prompted several methods.
Three test method forearly shrinkage cracking
Slab method Ring method Prism method
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1 、 Slab Method 1
wire mesh or steel bar provide constraint
Introduce by Karri in 1985ACI 544.2R fortesting Fiber Reinforced Concrete
limitation : crack is irregular and disordercouldn’t provide quick and accurate evaluation
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1 、 Slab Method 2
limitation : coarse aggregate in concrete falling down after vibrationThe key test part may be mortar ,not concrete
Recommended by ICBO and RILEM
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2 、 Ring Method
Ring method picture Observe and measure the crack
Introduced by Roy Carlson from MIT in 1942. limitation : need long time (several days) to wait the crack appear
and its poor sensitivity.
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3 、 Prism Method
Introduced by Springenschmid from Germany in 1960’s. limitation : inconvenient to use at job site and instruments require high sensitivity and expensive.
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Aim for the new method
providing a method to evaluate concrete crack performance with:
1 、 quickly testing
2 、 convenient measurement
3 、 can perform test at job site
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New method- Dumbbell Method
i xi ng bol t
ength adj uster
60 00
Secti on (
( )
ngl e adj ust sl i de- rai l
Rotati on axes i gh performance magnet
ength adj uster i xi ng bol t
Dumbbell device
Dumbbell method with stress risers is invented.
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New method- Dumbbell Method
The device is made by steel material, which included the fixed-end and adjustable stress risers in the middle which can induce the crack of the concrete specimen. The ends of the device can provide the constraint which makes concrete crack. This method proves to be more effective for the quick crack testing.
Dumbbell device
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Mechanism Analysis of dumbbell method
A'
A
F1 F2
F1' F2'
q1
q1'
q2
q2'
B
B'
C
C'
Mechanism Analysis
Under the induction of stress riser and the constraint of the ends of mold, the crack shape is close to a single line,(the line of A-A’). So the crack observation and measurement is more convenient and faster.
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Mechanism Analysis of new test method
F1F1V
F1H F2H
F2VF2
F2'F2V'
F2H'F1H'
F1V'F1'
A
A' q1'
q1
A
A'
F1H'
F1H
B
B'
Mechanical analysis of A point and A’ point
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Evaluation Index
1 、 ACW (average crack width within 24h)
The only crack are divided into six equal portions by five line segments. Record the crack width at the five crossing of crack and line. The average of the five widths is ACW .
2 、 ICT (Initial crack time) ICT is another important index of concrete cracking performance. The later the concrete crack, the better the anti-cracking performance.
microscope
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Testing device
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Comparative study of three evaluating methods
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Concrete mix proportion
There are 3 mix proportions and each will be tested by three methods under the same test condition .The fiber reinforced concrete is designed to compare sensitivity of three test method. Fiber dosage is 0.9kg/m3, 1.2kg/m3, 1.5kg/m3. Tests temperature is maintained at 30 ± 2 ℃, relative humidity is maintained at 50 ± 5%.
Material (kg/m3)Slump
( mm )Slump
Flow( mm )Cement Sand Gravel Water Fiber
360 796 1099 145 0.9 210 400/400
360 796 1099 145 1.2 200 460/460
360 796 1099 145 1.5 205 440/460
Concrete mix proportion
cubic meter
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Test results
1.2kg
1.2kg
0.9kg
1.5kg
1.5kg
1.5kg
1.2kg0.9kg
0.9kg
0
0.3
0.6
0.9
1.2
1.5
dumbbel l pl ate r ing
max
imum
cra
ck w
idth
(m
m)
Dumbbell Slab Ring
1.5kg/m3
Initial crack time 2h:15min 2h:30min 6d
Maximum crack width 1.07mm 0.64mm 0.52mm
1.2kg/m3
Initial crack time 1h:50min 2h:10min 4.5d
Maximum crack width 1.13mm 0.88mm 0.59 mm
0.9kg/m3
Initial crack time 1h:25min 1h:50min 4d
Maximum crack width 1.34mm 1.09mm 0.81mm
maximum crack width(24h)
From the test results, for concrete with dosage for 1.5kg/m3, concrete crack first by dumbbell method which is superior to slab and ring method. dumbbell method need 2h:15min.Ring method need 6d; From view of the maximum crack width, it is 1.07mm by using dumbbell method which much larger than the other two methods. The concrete cracking performance can be reflected more obviously with larger Maximum crack width which make the crack be measured more easily and can reduce measurement error.
concrete with dosage of 0.9kg/m3 and 1.2kg/m3 also shows the same trend.
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Overall comparisons of the three test method
dumbbell slab ring
dumbbell slab ring
sensitivity good above average average
testing cycle short short long
operability good average above average
application on job site
good above average average
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Engineering Application
Dumbbell method has been used to design concrete with high anti-crack performance for the second runway of Tianjin airport which is designed for test flight of the first Airbus A320 plane assembling in china.
Testing photo with dumbbell method
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airport runway construction (Tianjin, China)
Concrete finishing
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Runway (Tianjin, China)
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Runway test for A320 ( China, May,2009 )
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A320 test successful ( China, May ,2009 )
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Conclusion
To sum up, from the view of sensitivity, test cycle, operability, application under airport construction,
Dumbbell method is suitable for evaluating the early age concrete cracking performance with the following advantages:
1 、 stronger sensitivity
2 、 quickly testing
3 、 more accurate
4 、 easy measurement
5 、 convenient application under airport construction
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