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Shear behavior of composite frame inner joints of SRRC column-steel beam subjected to cyclic loading

机译:SRRC柱钢束复合框架内关节的剪切行为经受循环载荷

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In this paper, cyclic loading tests on composite frame inner joints of steel-reinforced recycled concrete (SRRC) column-steel beam were conducted. The main objective of the test was to obtain the shear behavior and analyze the shear strength of the joints. The main design parameters in the test were recycled coarse aggregate (RCA) replacement percentage and axial compression ratio. The failure process, failure modes, hysteresis curves and strain characteristics of the joints were obtained, and the influences of design parameters on the shear strength of the joints have been also analysed in detail. Results show that the failure modes of the joints area are typical shear failure. The shear bearing capacity of the joints maximally decreased by 10.07% with the increase in the RCA replacement percentage, whereas the shear bearing capacity of the joints maximally increased by 16.6% with the increase in the axial compression ratio. A specific strain analysis suggests that the shear bearing capacity of the joints was mainly provided by the three shear elements of the recycled aggregate concrete (RAC) diagonal compression strut, steel webs and stirrups of the joint area. According to the shear mechanism and test results, the calculation formulas of the shear bearing capacity of the three main shear elements were deduced separately. Thus, the calculation model of the shear bearing capacity of the composite joints considering the adverse effects of the RCA replacement percentage was established through a superposition method. The calculated values of shear strength based on the calculation model were in good agreement with the test values. It indicates that the calculation method in this study can reasonably predict the shear bearing capacity of the composite frame inner joints of SRRC column-steel beam.
机译:本文采用了钢筋再循环混凝土(SRRC)柱 - 钢梁复合框架内接缝的循环加载试验。测试的主要目的是获得剪切行为并分析关节的剪切强度。测试中的主要设计参数是再生粗骨料(RCA)更换百分比和轴向压缩比。获得了接头的故障过程,故障模式,滞后曲线和应变特性,并详细分析了设计参数对关节剪切强度的影响。结果表明,关节区域的故障模式是典型的剪切失效。随着RCA替代百分比的增加,接头的剪切承载力最大10.07%,而接头的剪切承载力随轴向压缩比的增加,接头的剪切承载力最大增加16.6%。特定的应变分析表明,关节的剪切承载力主要由再循环骨料混凝土(RAC)对角线压缩支柱,接头区域的钢网和搅拌器的三个剪切元件提供。根据剪切机制和测试结果,分别推断出三个主要剪切元件的剪切承载力的计算公式。因此,通过叠加法建立了考虑RCA替换百分比的不良反应的复合接头的剪切承载力的计算模型。基于计算模型的剪切强度的计算值与测试值吻合良好。表明该研究中的计算方法可以合理地预测SRRC柱 - 钢梁复合框架内接头的剪切承载力。

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