首页|Formwork lateral pressure of precast normal-concrete composite shear walls infilled with self-compacting concrete

Formwork lateral pressure of precast normal-concrete composite shear walls infilled with self-compacting concrete

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Wall cracking and mold expanding due to concrete vibrations can be effectively solved through the application of precast normal-concrete composite shear walls infilled with self-compacting concrete (SCC). However, the high liquidity of SCC will induce a higher lateral pressure. Therefore, it is important to obtain a better understanding of the template lateral pressure. In this work, nine composite shear walls were experimentally investigated, focusing on the effects of two parameters, i.e., the casting rate and the section width of the formwork. The time-varying pressure was monitored during the SCC pouring. It is found that the increase of casting rate from 3.2 m/h to 10.3 m/h resulted in a higher maximum lateral pressure. The higher casting rate led to a longer time required for the lateral pressure to drop to a steady value. There was no correlation between the section width and the rate of decrease in the initial formwork pressure and stable value. Based on the test results, a formula considering the effect of casting speed for the calculation of SCC formwork pressure was established to fill the gap in the current standards and for engineering applications.

formwork lateral pressureself-compacting concrete (SCC)composite shear wallcasting rate

YAO Rong、YE Yan-hua

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Department of Civil Engineering, Yangzhou Polytechnic College, Yangzhou 225009, Jiangsu Province, P. R. China

College of Civil Engineering, Nanjing University of Technology, Nanjing 210009, P. R. China

Funded by the National Natural Science Foundation of ChinaCooperation Project of Yangzhou Science and Technology Bureau

51178218YZ2016267

2018

重庆大学学报(英文版)
重庆大学

重庆大学学报(英文版)

影响因子:0.02
ISSN:1671-8224
年,卷(期):2018.17(2)
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