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首页> 外文期刊>Proceedings of the Institution of Civil Engineers >Effect of axial compression on ductility design of RC walls
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Effect of axial compression on ductility design of RC walls

机译:轴向压缩对钢筋混凝土墙延性设计的影响

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Reinforced concrete (RC) structural walls can render excellent lateral stability and ductility to medium to high-rise buildings, but are generally subjected to very high axial compression loading, which can reduce the inherent ductility. A comprehensive statistical analysis with 474 sets of experimental data was conducted to evaluate and quantify the effect of the axial compression ratio (ACR) on the structural performance of RC structural walls. The stipulated limits on the ACR and the methods of evaluation used in various design codes were compared. Provisions on the limits of the ACR stipulated in various design codes were compared, and the expected attainable ductility factors for RC walls designed to different codes were evaluated. It was found that the provisions on ACR limits in Eurocode 8 generally satisfy the target ductility level but a distinction needs to be made between non-squat and squat walls due to their different structural behaviours.
机译:钢筋混凝土(RC)结构墙可为中高层建筑提供出色的侧向稳定性和延展性,但通常承受很高的轴向压缩载荷,这会降低固有的延展性。进行了474套实验数据的综合统计分析,以评估和量化轴向压缩比(ACR)对RC结构墙结构性能的影响。比较了各种设计规范中对ACR规定的限制和评估方法。比较了各种设计规范中关于ACR极限的规定,并评估了根据不同规范设计的RC墙的预期可获得的延性因子。已经发现,欧洲规范8中有关ACR限制的规定通常满足目标延展性水平,但由于其结构特性不同,因此需要对非蹲式墙和蹲式墙进行区分。

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