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火灾前后再生骨料钢管混凝土柱的力学性能

Mechanical Behavior of Recycled Aggregate Concrete-Filled Steel Tubular Columns before and after Fire.

作者信息

Liu Wenchao, Cao Wanlin, Zhang Jianwei, Wang Ruwei, Ren Lele

机构信息

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

出版信息

Materials (Basel). 2017 Mar 9;10(3):274. doi: 10.3390/ma10030274.

Abstract

Recycled aggregate concrete (RAC) is an environmentally friendly building material. This paper investigates the mechanical behavior of recycled aggregate concrete filled steel tube (RACFST) columns exposed to fire. Two groups of 12 columns were designed and tested, under axial compression, before and after fire, to evaluate the degradation of bearing capacity due to fire exposure. Six specimens were subjected to axial compression tests at room temperature and the other six specimens were subjected to axial compression tests after a fire exposure. The main parameters of the specimens include the wall thickness of the steel tube (steel content) and the type of concrete materials. Several parameters as obtained from the experimental results were compared and analyzed, including the load-bearing capacity, deformation capacity, and failure characteristics of the specimens. Meanwhile, rate of loss of bearing capacity of specimens exposed to fire were calculated based on the standards EC4 and CECS28:90. The results show that concrete material has a large influence on the rate of loss of bearing capacity in the case of a relatively lower steel ratio. While steel content has little effect on the rate of loss of bearing capacity of concrete-filled steel tube (CFST) columns after fire, it has a relatively large influence on the loss rate of bearing capacity of the RACFST columns. The loss of bearing capacity of the specimens from the experiment is more serious than that from the calculation. As the calculated values are less conservative, particular attention should be given to the application of recycled aggregate concrete in actual structures.

摘要

再生骨料混凝土(RAC)是一种环保型建筑材料。本文研究了火灾作用下钢管再生骨料混凝土(RACFST)柱的力学性能。设计并测试了两组各12根柱,在火灾前后进行轴向压缩试验,以评估火灾暴露导致的承载力退化情况。六个试件在室温下进行轴向压缩试验,另外六个试件在火灾暴露后进行轴向压缩试验。试件的主要参数包括钢管壁厚(含钢量)和混凝土材料类型。对试验结果得到的几个参数进行了比较和分析,包括试件的承载能力、变形能力和破坏特征。同时,根据欧洲规范4(EC4)和中国工程建设标准化协会标准CECS28:90计算了火灾暴露试件的承载力损失率。结果表明,在含钢率相对较低的情况下,混凝土材料对承载力损失率有较大影响。虽然含钢量对火灾后钢管混凝土(CFST)柱的承载力损失率影响较小,但对RACFST柱的承载力损失率影响相对较大。试验试件的承载力损失比计算结果更严重。由于计算值不够保守,在实际结构中应用再生骨料混凝土时应特别注意。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/37a8/5503392/0610006b7531/materials-10-00274-g001.jpg

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