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Lateral performance of midply wood shear walls with anchor tie-down system: Experimental investigation and numerical simulation

机译:中间木剪力墙的横向性能,带锚固系统:实验研究和数值模拟

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This paper presents experimental and numerical studies on the lateral performance of midply wood shear walls. A kind of anchor tie-down system (ATS) is introduced into the wood shear wall, and two different wall-foundation connections (i.e., screwed connection and bolted connection) are considered. Reserved cyclic loading tests were conducted to investigate the failure modes, lateral load resisting capacity, stiffness degradation, and energy dissipation of four midply wood shear wall specimens. Test results show that with the installation of ATS, the lateral load resisting capacity, energy dissipation, and lateral stiffness of the specimen increased by 154%, 427%, and 93%, respectively. The pull-out failure of the wall studs was also avoided with the application of ATS. Compared with the midply wood shear wall specimens with bolted wall-foundation connection, the specimens with screwed wall-foundation connection dissipated more energy; however, the fatigue failure of the screws might lead to brittle failure of the shear wall. A nonlinear finite element model of the midply wood shear wall was then developed and verified with the test results. User-defined Q-pinch model was applied to simulate the sheathing-framing connection of the shear wall. The simulation results show that the hysteretic behavior of the specimen with ATS was well predicted. The experimental and numerical studies provide fundamental knowledge for the development and application of midply wood shear walls, especially for the application of such wall system into mid-rise timber structures. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文介绍了中层木剪力墙侧向性能的实验性和数值研究。将一种锚固束缚系统(ATS)引入木材剪切壁,并考虑了两个不同的壁基连接(即螺纹连接和螺栓连接)。进行了保留的循环加载试验,以研究四种中木剪力墙标本的横向载荷能力,突出载荷能力,刚度降解和能量耗散。测试结果表明,随着ATS的安装,标本的横向负载能力,能量耗散和横向刚度分别增加了154%,427%和93%。随着ATS的应用,还避免了墙壁螺柱的拉出失效。与带有螺栓壁基连接的中间木剪力墙标本相比,标本具有螺纹壁基连接耗散的能量;然而,螺钉的疲劳失效可能导致剪力墙的脆性失效。然后开发了中间木剪力墙的非线性有限元模型并通过测试结果进行了验证。应用了用户定义的Q-PINCH模型来模拟剪力墙的护套框架连接。仿真结果表明,用ATS的标本的滞后行为良好预测。实验和数值研究为中层木剪力墙的开发和应用提供了基础知识,特别是将这种墙体系统应用于中升木结构中。 (c)2019 Elsevier Ltd.保留所有权利。

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