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A biaxial hysteretic model for a structural system incorporating strength deterioration and pinching phenomena

机译:考虑强度下降和挤压现象的结构系统双轴滞回模型

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摘要

A biaxial hysteretic model is developed to take into account the commonly observed hysteretic characteristics of strength and stiffness degradation, pinching and biaxial interaction. The concept of zero force point is proposed to develop the biaxial hysteretic model. Two non-linear inelastic springs and one linear elastic spring are connected in parallel to define the cyclic behavior of the proposed biaxial hysteretic model. The proposed biaxial hysteretic model is rate-independent and capable of simulating not only global (such as story shear force versus story drift response of the whole structure) but also the local hysteretic behavior of structural member (such as moment versus curvature or plastic rotation response of a structural element). The biaxial cyclic loading test data of six reinforced concrete columns, which are designed for flexural failure and shear failure, are used to validate the proposed biaxial hysteretic model.
机译:开发双轴滞后模型时要考虑到通常观察到的强度和刚度降低,收缩和双轴相互作用的滞后特性。提出了零力点的概念来发展双轴滞回模型。两个非线性非弹性弹簧和一个线性弹性弹簧并联连接,以定义所提出的双轴滞回模型的循环特性。所提出的双轴滞后模型与速率无关,并且不仅可以模拟整体(例如,整个结构的故事剪力与故事漂移反应),而且还可以模拟结构构件的局部滞后行为(例如,力矩与曲率或塑性旋转响应)结构元素)。针对弯曲破坏和剪切破坏设计的六个钢筋混凝土柱双轴循环荷载试验数据,用于验证所提出的双轴滞回模型。

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