Test Method of Segregation Resistance of High Fluidity Concrete Based on Numerical Simulation of Dynamic Segregation of Coarse Aggregate

Author:

Xu Zhisong1,Li Zhuguo2,Liu Jiaping1,Chen Wei2,Liu Jianzhong3,Han Fangyu3

Affiliation:

1. School of Materials Science and Engineering, Southeast University, Nanjing 211189, P.R. China.

2. Graduate School of Science and Technology for Innovation, Yamaguchi University, Yamaguchi, 755-8611, Japan.

3. State Key Laboratory of High Performance Civil Engineering Materials, Jiangsu Research Institute of Building Science Co., Ltd., Nanjing 211103, P.R. China.

Publisher

Japan Concrete Institute

Reference33 articles.

1. 1) Abo Dhaheer, M. S., Kulasegaram, S. and Karihaloo, B. L., (2016). “Simulation of self-compacting concrete flow in the J-ring test using smoothed particle hydrodynamics (SPH).” Cement and Concrete Research, 89, 27-34.

2. 2) ASTM, (2017a). “Standard test method for static segregation of self-consolidating concrete using column technique (ASTM C1610/C1610M-14).” West Conshohocken Pennsylvania: ASTM International.

3. 3) ASTM, (2017b). “Standard test method for passing ability of self-consolidating concrete by J-ring (ASTM C1621/C1621M-17).” West Conshohocken Pennsylvania: ASTM International.

4. 4) Bartos, P. J. M., Sonebi, M. and Tamimi, A. K., (2002). “U-shaped test.” In: Report of Technical Committee TC145: Workability and Rheology of Fresh Concrete : Compendium of Tests. Paris: RILEM Publications, 104-106.

5. 5) BSI, (2010a). “Testing fresh concrete, Part 10: Self-compacting concrete. L-box test (BS EN 12350-10).” London: The British Standards Institution.

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