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Nonlinear dynamic analysis of RC frames using cyclic moment-curvature relation

机译:基于循环弯矩-曲率关系的RC框架非线性动力分析

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摘要

Nonlinear dynamic analysis of a reinforced concrete (RC) frame under earthquake loading is performed in this paper on the basis of a hysteretic moment-curvature relation. Unlike previous analytical moment-curvature relations which take into account the flexural deformation only with the perfect-bond assumption, by introducing an equivalent flexural stiffness, the proposed relation considers the rigid-body-motion due to anchorage slip at the fixed end, which accounts for more than 50% of the total deformation. The advantage of the proposed relation, compared with both the layered section approach and the multi-component model, may be the ease of its application to a complex structure composed of many elements and on the reduction in calculation time and memory space. Describing the structural response more exactly becomes possible through the use of curved unloading and reloading branches inferred from the stress-strain relation of steel and consideration of the pinching effect caused by axial force. Finally, the applicability of the proposed model to the nonlinear dynamic analysis of RC structures is established through correlation studies between analytical and experimental results.
机译:基于滞后弯矩-曲率关系,本文对钢筋混凝土框架进行地震荷载作用下的非线性动力分析。与先前的分析弯矩-曲率关系不同,该弯矩-曲率关系仅在完全粘结假设下考虑了挠曲变形,而通过引入等效挠曲刚度,建议的关系则考虑了固定端的锚固滑移引起的刚体运动,这说明了超过总变形的50%。与分层截面方法和多组件模型相比,所建议的关系的优点可能在于易于将其应用到由许多元素组成的复杂结构中,并且减少了计算时间和存储空间。通过使用从钢的应力-应变关系推断出的弯曲卸载和再加载支路,并考虑轴向力引起的挤压效应,可以更精确地描述结构响应。最后,通过分析和实验结果之间的相关性研究,建立了所提模型对钢筋混凝土结构非线性动力分析的适用性。

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