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Investigation on seismic performance and shear strength of high-strength concrete-filled polyvinyl chloride tube short columns

机译:高强混凝土填充聚氯乙烯管短柱的抗震性能和抗剪强度研究

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摘要

This paper innovatively designs polyvinyl chloride tube (PVCT) with high-strength concrete (HC) and presents the results of cyclic loading tests on new reinforced high-strength concrete short columns, including three high-strength concrete-filled PVCT (HC-PVCT) short columns, one high-strength concrete-filled steel tube short column and one HC short column. The main objective of this research was to evaluate the seismic behaviors of HC short columns based on the quasistatic test of the columns. The design parameters of the columns in the experiments were axial compression ratio, reinforcement measures, concrete strength, stirrups configuration, and the height-diameter ratio of tubes. The crack distribution, failure modes, hysteresis loops, skeleton curves, energy dissipation capacity, strength degradation, stiffness degradation, and cumulative damage of the columns were presented and analyzed. The results showed that the HC-PVCT column had a fuller hysteretic loop and a higher peak load than the HC column. Compared with HC column, the strength degradation of HC-PVCT columns was slower, and the ductility increased significantly. With a larger axial compression ratio, the ductility of HC-PVCT columns was decreased. Based on the test and analysis results, a modified HC-PVCT design method was proposed to calculate the nominal shear strength of HC-PVCT short columns.
机译:本文对高强度混凝土(HC)的聚氯乙烯管(PVCT)进行了创新设计,并提出了对新型增强型高强度混凝土短柱(包括三个高强度混凝土填充PVCT(HC-PVCT))的循环荷载测试结果短柱,一根高强度钢管混凝土短柱和一根HC短柱。本研究的主要目的是基于准圆柱试验评估HC短柱的抗震性能。实验中圆柱的设计参数为轴向压缩比,加固措施,混凝土强度,箍筋配置和管的高径比。给出并分析了裂纹的分布,破坏模式,磁滞回线,骨架曲线,能量耗散能力,强度下降,刚度下降以及累积损伤。结果表明,与HC色谱柱相比,HC-PVCT色谱柱具有更充分的磁滞回线和更高的峰载量。与HC柱相比,HC-PVCT柱的强度下降较慢,延展性显着提高。轴向压缩比越大,HC-PVCT柱的延展性越低。根据试验和分析结果,提出了一种改进的HC-PVCT设计方法,用于计算HC-PVCT短柱的标称抗剪强度。

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