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Experimental Investigation of Self-Centering Steel Plate Shear Walls

机译:自定心钢板剪力墙的试验研究

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A series of subassembly tests were conducted to investigate the behavior of the self-centering steel plate shear wall (SC-SPSW) system under cyclic loading. The SC-SPSW system utilizes thin steel web plates to provide energy dissipation and the primary strength and stiffness of the system, whereas posttensioned (PT) beam-to-column connections provide recentering capabilities. In this new system, the web plate is intended to yield under cyclic loading, whereas the boundary elements and PT connection elements remain undamaged. The web plate can then be replaced relatively easily following significant inelastic cycles. This experimental program studies the effects of various design parameters on the system and connection response and compares the response with approximate analytical formulas. The experimental results show that the SC-SPSW system has high ductility, high initial stiffness, recentering capabilities, an overall system response as anticipated, and more energy dissipation than expected.
机译:进行了一系列子装配测试,以研究自定心钢板剪力墙(SC-SPSW)系统在循环载荷下的性能。 SC-SPSW系统利用薄钢板来提供能量耗散以及系统的主要强度和刚度,而后张紧(PT)的梁柱连接提供了对中功能。在这个新系统中,腹板要在循环载荷下屈服,而边界元件和PT连接元件则保持完好无损。在明显的非弹性循环之后,可以相对容易地更换腹板。该实验程序研究各种设计参数对系统和连接响应的影响,并将响应与近似分析公式进行比较。实验结果表明,SC-SPSW系统具有较高的延展性,较高的初始刚度,重新定位能力,预期的整体系统响应以及比预期更多的能量消耗。

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