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首页> 外文期刊>KSCE journal of civil engineering >Shaking Table Test on Seismic Responses of a Monolithic Precast Concrete Shear Wall Structure
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Shaking Table Test on Seismic Responses of a Monolithic Precast Concrete Shear Wall Structure

机译:整体式预制混凝土剪力墙结构地震响应的振动台试验

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摘要

To examine the seismic performance of Monolithic Precast Concrete Shear Wall (MPCSW) structure, a 1/5-scaled twelve-story model is designed and investigated by shaking table test, and connections between the precast elements and their impact on seismic performance of the overall model are comprehensively inspected and analyzed. Based on the testing results, the structural responses are divided into elastic stage and plastic stage, and the variations of dynamic characteristics, cracking and failure pattern, seismic responses of the model are accordingly presented. The experimental results indicate that most of critical cracks of the MPCSW model locate on the coupling beams and horizontal connections of precast concrete shear walls, and the fundamental frequency exhibits a successively decreasing trend during the entire testing process. Furthermore, The MPCSW model is designed in accordance with Chinese codes meets the requirement for the seismic fortification intensity of eight, and shows an adequate safety margin to resist collapse in the case of 0.90 g.
机译:为了检查整体式预制混凝土剪力墙(MPCSW)结构的抗震性能,设计了1/5比例的十二层模型,并通过振动台试验进行了研究,以及预制元件之间的连接及其对整体抗震性能的影响。对模型进行了全面检查和分析。根据测试结果,将结构响应分为弹性阶段和塑性阶段,并给出了模型的动力特性,裂缝和破坏模式,地震响应的变化。实验结果表明,MPSCW模型的大多数关键裂纹都位于预制混凝土剪力墙的耦合梁和水平连接上,并且基频在整个测试过程中呈现出连续下降的趋势。此外,根据中国规范设计的MPCSW模型满足8级抗震设防强度的要求,在0.90 g的情况下显示出足够的安全裕度,可以抵抗坍塌。

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