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Test on mechanical behavior of pultruded concrete-filled GFRP tubular short columns after elevated temperatures

机译:升温后拉挤混凝土GFRP管状短柱力学行为的试验

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摘要

This paper presents an experimental investigation on the mechanical behavior of pultruded concrete-filled GFRP tubular (CFGT) short columns exposed to elevated temperatures under axial compressive loading. A total of 117 pultruded CFGT short columns subjected to different elevated temperatures and temperature duration were axially tested, including 108 specimens after elevated temperature and 9 specimens at ambient temperature served as the control group. The main variables explored in this paper included the GFRP tube thickness, concrete compressive strength, elevated temperature, and temperature duration. The results obtained from the experiments indicate that the ultimate strength and initial stiffness of specimens decrease remarkably with the increase of the elevated temperature, while the ductility of specimens is enhanced accordingly. Especially, the elevated temperature causes an obvious reduction (about 37%) in the ultimate strength of specimens when it exceeds 200 degrees C. Among the four main variables, the elevated temperature exerts the most significant impacts on the ultimate strength of specimens, the GFRP tube thickness and concrete compressive strength have certain positive effects, while the influence of temperature duration is almost negligible. Based on the experimental results, a parameter formula for the calculation of the ultimate strength of pultruded CFGT short columns after elevated temperatures is proposed, which shows great accuracy and rationality compared with the test results.
机译:本文提出了对轴向压缩负载下升高温度的拉挤混凝土填充GFRP管状(CFGT)短柱的力学行为的实验研究。总共117种与升高的温度和温度持续时间进行了不同的覆盖的CFGT短柱,轴向测试,包括在升高的温度和9个样品的环境温度下作为对照组进行的108个试样。本文探索的主要变量包括GFRP管厚度,混凝土抗压强度,高温和温度持续时间。从实验中获得的结果表明,随着升高的温度的增加,样品的最终强度和初始刚度显着降低,而样品的延展性相应地增强。特别是,当它超过200摄氏度时,升高的温度导致标本的最终强度的明显减少(约37%)。在四个主要变量中,升高的温度施加了对标本最终强度的最大影响,GFRP管厚度和混凝土抗压强度具有一定的积极效果,而温度持续时间的影响几乎可以忽略不计。基于实验结果,提出了一种用于计算升高温度后拉挤CFGT短柱的最终强度的参数公式,与测试结果相比,具有良好的准确性和理性。

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