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首页> 外文期刊>Journal of structural engineering >Analysis of Shear-Critical Reinforced Concrete Plane Frame Elements under Cyclic Loading
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Analysis of Shear-Critical Reinforced Concrete Plane Frame Elements under Cyclic Loading

机译:循环荷载作用下钢筋混凝土临界剪力平面构件的分析

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An analytical procedure was recently developed for the nonlinear analysis of reinforced concrete frame structures consisting of beams, columns, and shear walls under monotonic loading. The procedure is distinct from others because it is capable of inherently and accurately considering shear effects and significant second-order mechanisms with a simple modeling process suitable for use in practice. In this study, the procedure is further developed to enable the performance assessment of shear-critical frame structures under general (arbitrary) loading, including the special cases of cyclic and reversed-cyclic loads. Newly developed and implemented formulations are described and applied to 11 previously tested specimens for verification. Important considerations in nonlinear modeling and the limitations of the procedure are also discussed. The procedure is found to accurately simulate the overall experimental behaviors of the specimens examined. Performance measures, such as load and deformation capacities, stiffnesses, energy dissipations, ductilities, failure modes, crack widths, and reinforcement strains, are typically captured well. The procedure exhibits excellent convergence and numerical stability, requiring little computational time.
机译:最近开发了一种分析程序,用于在单调荷载下对由梁,柱和剪力墙组成的钢筋混凝土框架结构进行非线性分析。该过程与其他过程有所不同,因为它能够通过固有的,准确的考虑剪切效应和重要的二阶机制的能力,并采用适合实际使用的简单建模过程。在这项研究中,该程序得到了进一步发展,以能够评估在一般(任意)载荷下,包括循环和反向循环载荷的特殊情况下,剪切临界框架结构的性能。描述了新开发和实施的配方,并将其应用于11个先前测试的样品中进行验证。还讨论了非线性建模中的重要考虑因素以及该过程的局限性。发现该程序可以准确模拟所检查样品的整体实验行为。通常可以很好地捕获性能指标,例如载荷和变形能力,刚度,能量耗散,延性,破坏模式,裂纹宽度和钢筋应变。该过程具有出色的收敛性和数值稳定性,需要很少的计算时间。

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