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Comparative Study of Seismic Behavior between Monolithic Precast Concrete Structure and Cast-in-Place Structure

机译:整体式预制混凝土结构与现浇结构抗震性能的比较研究

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We doubt whether the monolithic precast concrete structure could be designed as the cast-in-place structure in high seismic intensity area. To solve the puzzle, the 1/5 scaled monolithic precast concrete structure model and cast-in-place structure model were designed and tested by shake table. Comparative analysis between them was made to better understand their seismic behavior. Based on the experimental results, the failure pattern and mechanism were different, which was concentrated damage in coupling beam and then extended to shear walls of CIPS, and the weak connections presented cracks between precast elements besides the damage coupling beam of MPCS. The natural frequency of MPCS possessed a typical feature for the weakness of connections, which was the initial one greater than that of CIPS and decreased fast after the first waves with PGA of 0.035 g. Acceleration amplifying factors presented variation trend under the different earthquake waves. The distribution of seismic response presented linearity along the height of models in plastic stage and turned into nonlinearity later for severe damage. In general, the MPCS and CIPS had similar seismic responses, except typical characteristics. And they were proven to have better seismic performance without collapse under the high-intensity earthquake waves.
机译:我们怀疑整体式预制混凝土结构是否可以设计为高地震烈度地区的现浇结构。为了解决这个难题,设计了1/5比例的整体式预制混凝土结构模型和现浇结构模型,并通过振动台进行了测试。他们之间进行了比较分析,以更好地了解他们的地震行为。根据实验结果,破坏模式和机理不同,其破坏集中在耦合梁中,然后扩展到CIPS的剪力墙,除了MPCS破坏耦合梁外,薄弱的连接在预制构件之间也出现裂缝。 MPCS的固有频率具有连接弱点的典型特征,它的初始频率比CIPS的初始频率大,而在PGA为0.035μg的第一波之后迅速下降。加速度放大因子呈现出不同地震波下的变化趋势。地震响应的分布在塑性阶段沿模型的高度呈线性关系,后来由于严重破坏而变为非线性。通常,除了典型特征外,MPCS和CIPS具有相似的地震响应。事实证明,它们在高强度地震波下具有更好的抗震性能,而不会坍塌。

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