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首页> 外文期刊>Journal of structural engineering >Cyclic Behavior of Multirow Slit Shear Walls Made from Low-Yield-Point Steel
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Cyclic Behavior of Multirow Slit Shear Walls Made from Low-Yield-Point Steel

机译:低屈服强度钢制成的多排缝剪力墙的循环特性

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摘要

The steel slit shear wall has attracted much attention as a lateral force-resisting system. However, issues such as fractures formed at the slit ends and pinched hysteresis reduce energy dissipation. To address these issues, the authors have developed a steel slit shear wall made from low yield point steel that has a low yield stress and large ductility and strain hardening. Steel slit shear walls made from low-yield-point steel dissipated energy at small lateral drifts, shear deformation was evenly distributed among all rows, fracture was eliminated, and fat hysteresis without the requirement for out-of-plane constraints was feasible. By adjusting dimensions of the link (segment divided by slits) and the number of rows of links while maintaining the required shear strength and stiffness, a small width-to-thickness ratio for the links was achievable to ensure the in-plane behavior of links and thus good energy dissipation. The combined hardening model developed using commercially available software simulated well the large strain hardening of low-yield-point steel. A proposed design procedure that ensures good energy dissipation was given.
机译:钢制切缝剪力墙作为侧向抗力系统引起了广泛关注。然而,诸如在狭缝端部处形成的裂缝和收缩的滞后之类的问题减少了能量耗散。为了解决这些问题,作者开发了一种由低屈服点钢制成的狭缝剪力墙,其屈服应力低,延展性和应变硬化大。由低屈服点钢制成的狭缝剪力墙在较小的侧向位移时会耗散能量,剪力变形均匀地分布在所有行中,消除了断裂,并且不需要平面外约束即可实现脂肪滞后。通过调整链节的尺寸(段除以狭缝)和链节的行数,同时保持所需的剪切强度和刚度,可以实现链节的较小的宽厚比,以确保链节的面内行为并因此具有良好的能量消散。使用商业软件开发的组合淬火模型很好地模拟了低屈服点钢的大应变淬火。给出了确保良好能量耗散的建议设计程序。

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