Buckling Behavior of Steel Plates and Concrete Filled Composite Shear Walls Related Nuclear Power Engineering

Xiaohu Li, Yan Yuan
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Abstract

Based on the program of nuclear power engineering, the in-plane buckling behavior of Steel plates and concrete filled composite shear wall (SCSW) was investigated. 9 1/5 scaled specimens were conducted under horizontal cyclic load and constant vertical load. The parameters such as the space of studs, the vertical load, the form of connectors, and the thickness of the steel plate were designed to research the affection on the buckling of the steel plate. According to the results of tests, it can be seen that the bulge of the steel plate occurred at about 50mm above the top of the foundation beam. The bulge can be connected as a whole in the specimens with studs only, but not in the specimens with stiffeners. Finite element models were performed to simulate the buckling behavior of the steel plate, and the results were found to be in good agreement with the test results. The buckling stress of the steel plate was calculated by equations based on the measuring data. It was found that they were smaller than that of finite element analysis. The more accurate simulation was needed.
核电工程相关钢板与混凝土复合剪力墙的屈曲行为
基于核电工程程序,对钢板-混凝土复合剪力墙的面内屈曲行为进行了研究。在水平循环荷载和恒定垂直荷载作用下,进行了9个1/5缩放试件的试验。通过设计螺栓间距、竖向荷载、连接件形式、钢板厚度等参数,研究了对钢板屈曲的影响。根据试验结果可以看出,在基础梁顶部上方约50mm处出现了钢板的凸起。仅带螺柱的试件胀头可作为一个整体连接,而带加强筋的试件则不能。利用有限元模型对钢板的屈曲行为进行了模拟,结果与试验结果吻合较好。根据实测数据,用方程计算了钢板的屈曲应力。结果表明,它们比有限元分析的结果要小。需要更精确的模拟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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