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首页> 外文期刊>Journal of Constructional Steel Research >Experimental and numerical study of unstiffened steel plate shear wall structures
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Experimental and numerical study of unstiffened steel plate shear wall structures

机译:非加筋钢板剪力墙结构的试验与数值研究

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In order to investigate the seismic behaviors of unstiffened thin steel plate shear wall structure, tests of four three-story unstiffened steel plate shear wall specimens under cyclic loads were carried out. Parameters of the specimens included height-to-thickness ratio, span-to-height ratio and middle brace. The carrying capacity, hysteretic behavior, degraded characteristics, ductility, failure modes, energy dissipation capacity were analyzed and compared deeply. Besides, the nonlinear finite element method of shear wall structure was also established, which was verified by test results. Finally, the effect of column stiffness on load-carrying capacity was studied. The practical requirements of in-plane and out-of-plane stiffness of edge column-were suggested. The experimental and numerical results showed that: this kind structure exhibits high strength, good energy dissipation capacity, and good ductility (the ductility coefficients are more than 3.0). When the inter-story drift angle reaches 1/50, the strength degradation is no more than 5%, indicating that the structure has good seismic behaviors. The span-to-height ratio has little effect on load-carrying capacity, while slightly affects the initial stiffness and ductility. The effect of height-to-thickness ratio (thickness) on load-carrying capacity is relatively larger than other factors. The middle braces do not improve the behaviors of structures. The stiffness of edge column has great effect on lateral load-carrying capacity of shear wall structures. The value of column stiffness index could be within 2.0-2.5 to achieve the sufficient constraints and economical benefit. (C) 2015 Elsevier Ltd. All rights reserved.
机译:为了研究薄壁薄板剪力墙结构的抗震性能,对四个三层薄壁薄板剪力墙板在循环荷载作用下进行了试验。标本的参数包括高高比,跨高比和中撑。对承载力,滞回性能,退化特性,延性,破坏模式,耗能能力进行了分析和比较。此外,还建立了剪力墙结构的非线性有限元方法,并通过试验结果进行了验证。最后,研究了柱刚度对承载能力的影响。提出了边柱的平面内和平面外刚度的实际要求。实验和数值结果表明:这种结构具有高强度,良好的耗能能力和良好的延展性(延展系数大于3.0)。当层间漂移角达到1/50时,强度下降不超过5%,表明该结构具有良好的抗震性能。跨高比对承载能力影响很小,而对刚度和延展性的影响却很小。高度与厚度之比(厚度)对承载能力的影响相对大于其他因素。中括号不能改善结构的行为。边柱的刚度对剪力墙结构的侧向承载能力影响很大。柱刚度指数的值可以在2.0-2.5之间,以实现足够的约束和经济效益。 (C)2015 Elsevier Ltd.保留所有权利。

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