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Experimental and Theoretical Study on Seismic Behavior of Profiled Steel Sheet-Bamboo Plywood Composite Walls

机译:成型钢板竹胶合板复合墙体地震行为的实验与理论研究

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In order to promote building structure to be environmental friendly, light-weight and high-strength, a novel bamboo-steel composite wall is proposed. The composite wall is made up by sticking two pieces of bamboo plywood on the faces of a piece of profiled steel sheet utilizing structural glue. Taking thickness of the bamboo plywood and thickness and corrugation-height of the profiled steel sheet as variables, quasi-static tests were carried out on 5 specimens. Based on experimental phenomena and data, their earthquake resistant properties such as horizontal bearing capacity, ductility and energy dissipation and failure mechanism are analyzed. The results show that the bamboo plywood and profiled steel sheet can effectively work together, the composite walls possess wonderful seismic properties, and that changes of thickness or corrugation-height of profiled steel sheet make very sharp differences to the properties of the walls. Finally, a simplified mechanical model and calculation method for horizontal bearing capacity are proposed according to hysteresis curves within elastic range of these walls. The calculated values match well with the experimental ones.
机译:为了促进建筑结构,以环保,轻,高强度,提出了一种新型竹钢复合墙。通过粘附在一块成型钢板的脸上粘贴两块竹胶合板来弥补复合墙。将竹胶厚度和厚度和波纹高度的成型钢板作为变量为变量,在5个标本上进行了准静态试验。基于实验现象和数据,分析了它们的地震抗性特性,如水平承载能力,延展性和能量耗散和失效机制。结果表明,竹子胶合板和成型钢板可以有效地一起工作,复合壁具有精彩的地震性能,并且厚度或波纹高度的变化对墙壁的性质产生了非常急剧的差异。最后,根据这些壁的弹性范围内的滞后曲线提出了一种简化的机械模型和用于水平承载能力的计算方法。计算值与实验性相匹配。

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