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长期荷载作用下全尺寸再生骨料混凝土梁的时变行为

Time-Dependent Behavior of Full-Scale Recycled Aggregate Concrete Beams under Long-Term Loading.

作者信息

Cao Wanlin, Liu Yibin, Qiao Qiyun, Feng Yu, Peng Shiyang

机构信息

College of Architecture and Civil Engineering, Beijing University of Technology, Beijing 100124, China.

出版信息

Materials (Basel). 2020 Oct 29;13(21):4862. doi: 10.3390/ma13214862.

Abstract

Sixteen full-scale recycled aggregate concrete (RAC) beams were cast and tested to study their time-dependent behavior under long-term loading. The test parameters include the replacement rate of the recycled coarse aggregates (RCAs), the replacement rate of the recycled fine aggregates (RFAs), the concrete strength, and the stress ratio. The influence of the above variables on the deflection and stiffness is discussed. The results show that the RCAs will increase the deflection of the specimen at a low stress ratio; at a high stress ratio, the beams will experience nonlinear creep, and the deflection of the specimen will be affected by the RCAs and the stress ratio. The RFAs have a substantial influence on the time-dependent behavior of the specimen, and the deflection of the specimen with 100% replacement of recycled aggregates can increase by 30%; the strength of the concrete does not have a substantial influence on the time-dependent behavior of the specimen; and the stress ratio has an influence on the initial deflection of the specimen. A deflection calculation formula is established based on the stress-strain relationship of the beam under long-term loading and the characteristics of the RAC. The calculation results are in good agreement with the test results.

摘要

浇筑并测试了16根全尺寸再生骨料混凝土(RAC)梁,以研究其在长期荷载作用下的时变性能。试验参数包括再生粗骨料(RCA)的替代率、再生细骨料(RFA)的替代率、混凝土强度和应力比。讨论了上述变量对挠度和刚度的影响。结果表明,在低应力比下,RCA会增加试件的挠度;在高应力比下,梁会经历非线性徐变,试件的挠度会受到RCA和应力比的影响。RFA对试件的时变性能有显著影响,再生骨料100%替代的试件挠度可增加30%;混凝土强度对试件的时变性能没有显著影响;应力比对试件的初始挠度有影响。基于梁在长期荷载作用下的应力-应变关系和RAC的特性建立了挠度计算公式。计算结果与试验结果吻合良好。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ea53/7663747/635dd34f21f6/materials-13-04862-g001.jpg

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