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Axial compression performance of basalt-fiber-reinforced recycled-concrete-filled square steel tubular stub column

机译:玄武岩 - 纤维增强再生混凝土填充方钢管柱柱的轴向压缩性能

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摘要

This study aimed to inspect the axial compression mechanical performance of basalt-fiber-reinforced recycled - concrete (BFRRC)-filled square steel tubular stub column. The replacement ratio of recycled coarse aggregate (RCA) and the basalt fiber (BF) dosage were used as variation parameters, and the axial compression performance tests of 15 BFRRC-filled square steel tubular stub column specimens were conducted. The failure mode and the load-displacement/strain curve of the specimen were measured. The working process of the BFRRC-filled square steel tubular stub column was divided into three stages, namely, elastic-elastoplasticity, sudden drawdown, and plasticity. The influence of the design parameters on the peak bearing capacity, energy dissipation performance, and other axial compression performance indexes was discussed. A mathematical model of segmental stiffness degradation was proposed on the basis of the degradation law of combined secant stiffness under axial compression. The full-process curve equation of axial compressive stress-strain was proposed by introducing the influencing factors, including the RCA replacement ratio and the BF dosage, and the calculated curve agreed well with the test-measured curve.
机译:本研究旨在检查玄武岩 - 纤维增强再生混凝土(BFRRC)填充方钢管柱柱的轴向压缩力学性能。使用再循环粗骨料(RCA)和玄武岩纤维(BF)剂量的替代比用作变化参数,并进行15个BFRRC填充方形钢管柱标本的轴向压缩性能试验。测量试样的失效模式和负载 - 位移/应变曲线。 BFRRC填充方形钢管柱的工作过程分为三个阶段,即弹性弹塑性,突然拉伸和可塑性。讨论了设计参数对峰承载力,能量耗散性能和其他轴向压缩性能指标的影响。基于轴向压缩下的截线刚度的降解规律提出了分段刚度降解的数学模型。通过引入影响因子,包括RCA替代比和BF剂量,提出了轴向压缩应力 - 菌株的全处理曲线方程,并且计算出的曲线与测试测量的曲线很好地同意。

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