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Shear behavior of precast concrete wall structure based on two-way hollow- core precast panels

机译:基于双向空心预制板的混凝土预制墙结构的抗剪性能

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In this study, a new precast concrete shear wall system based on two-way hollow-core precast panels (TWHCPP) is proposed. Considering that the ductility of a shear wall is strongly related to its shear behavior, the shear behavior of the newly proposed system was investigated. First, pseudo-static tests were performed for one cast-in-place shear wall specimen and three TWHCPP shear wall specimens. Test results indicate that the cast-in-place shear wall specimen experienced diagonal tension failure and its axial load carrying capacity decreased abruptly when the peak strength was attained. In contrast, the TWHCPP shear wall can effectively avoid such brittle failure and can sustain the vertical and lateral loads at the limit state. Second, a numerical simulation method for the TWHCPP shear wall was proposed and applied to the three TWHCPP shear wall specimens. The predicted strengths and failure mechanisms show good agreement with the experimental results. Finally, a shear strength estimation method was proposed for the TWHCPP shear wall system. Compared to the experimental results, the method yields conservative estimations; thus, it can be a suitable approach to the TWHCPP shear wall design.
机译:在这项研究中,提出了一种基于双向空心预制板(TWHCPP)的新型预制混凝土剪力墙系统。考虑到剪力墙的延性与其剪力密切相关,因此对新提出的系统的剪力进行了研究。首先,对一个现浇剪力墙样本和三个TWHCPP剪力墙样本进行了拟静力试验。试验结果表明,当达到峰值强度时,现浇剪力墙试样经历了对角拉伸破坏,其轴向承载能力急剧下降。相反,TWHCPP剪力墙可以有效避免这种脆性破坏,并且可以将垂直和横向载荷维持在极限状态。其次,提出了TWHCPP剪力墙的数值模拟方法,并将其应用于三个TWHCPP剪力墙试样。预测的强度和破坏机理与实验结果吻合良好。最后,提出了TWHCPP剪力墙系统的抗剪强度估算方法。与实验结果相比,该方法得出了保守的估计值。因此,它可能是TWHCPP剪力墙设计的合适方法。

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