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Numerical modeling of masonry-infilled RC frames subjected to seismic loads

机译:砌体RC框架在地震荷载作用下的数值模拟

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The behavior of masonry-infilled reinforced concrete frames under cyclic lateral loading is complicated because a number of different failure mechanisms can be induced by the frame-infill interaction, including brittle shear failures of the concrete columns and damage of the infill walls. In this study, nonlinear finite element models have been used to simulate the behavior of these structures. Diffused cracking and crushing in concrete and masonry are described by a smeared-crack continuum model, while dominant cracks as well as masonry mortar joints are modeled with a cohesive crack interface model. The interface model adopts an elasto-plastic formulation to describe the mixed-mode fracture of concrete and masonry. The model accounts for cyclic crack opening and closing, reversible shear dilatation, and joint compaction due to damage. The constitutive models have been validated with experimental data and successfully applied to the dynamic analysis of a three-story, two-bay, masonry-infilled, non-ductile, reinforced concrete frame tested on a shake table. The results have demonstrated the capabilities of the finite element method in capturing the nonlinear cyclic load-displacement response and failure mechanisms of the structure, and indicated the important contribution of infill walls to the seismic resistance of a non-ductile reinforced concrete frame.
机译:砌体填充钢筋混凝土框架在周期性侧向荷载作用下的行为是复杂的,因为框架与填充物的相互作用会引起多种不同的破坏机制,包括混凝土柱的脆性剪切破坏和填充壁的破坏。在这项研究中,非线性有限元模型已被用来模拟这些结构的行为。用涂抹裂纹连续体模型描述了混凝土和砖石中的扩散性开裂和破碎,而主要裂纹和砌体砂浆接缝则通过内聚裂纹界面模型进行了建模。界面模型采用弹塑性公式描述混凝土和砖石的混合模式断裂。该模型考虑了周期性裂纹的开合,可逆剪切扩张以及由于损伤而引起的接头压实。本构模型已经通过实验数据进行了验证,并成功地应用于了在振动台上测试的三层,两舱,砌体填充,非延性,钢筋混凝土框架的动力分析。结果证明了有限元方法捕捉结构的非线性循环荷载-位移响应和破坏机理的能力,并表明了填充墙对非延性钢筋混凝土框架抗震性能的重要贡献。

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