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Cyclic behavior of wood-frame shear walls with vertical load and bending moment for mid-rise timber buildings

机译:木框架剪力墙具有垂直载荷和弯矩的循环行为为中升木材建筑

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摘要

In light wood-frame buildings, the gravitational and lateral force-resisting systems are composed of floor diaphragms and shear walls. During an earthquake, these walls are subjected to the simultaneous action of in-plane vertical force, shear force, and in-plane bending moment. In a mid-rise building, these internal forces can reach large magnitudes, especially on the lower stories, and could have an important influence on the lateral behavior of the walls. The historical use of light wood-frame construction has been in low-rise buildings. Consequently, few investigations have analyzed the effects of high gravitational forces or in-plane bending moment on the lateral behavior of wood shear walls designed for multi-story buildings. This paper presents an investigation of the cyclic lateral behavior of light wood-frame shear walls, designed for mid-rise buildings, subjected to large axial compressive load and in-plane bending moment. Eight wall specimens were experimentally tested with a cyclic lateral displacement protocol, a constant compressive load, and a cyclic in-plane bending moment. The effects of axial compressive load and in-plane bending moment were analyzed. Also, the wall length and the spacing of sheathing nails were varied to study the effects of these variables on the response. A numerical study was performed to show how these effects could influence the response of mid-rise timber buildings. An improvement in the lateral performance of the walls was observed compared to walls tested without compressive force nor bending moment, showing an increase in stiffness, load-carrying capacity, and dissipated energy.
机译:在轻型木材框架建筑物中,引力和横向力抗力系统由地板膜片和剪切墙组成。在地震期间,这些墙壁经受面内垂直力,剪切力和面内弯矩的同时作用。在中升建筑物中,这些内部力可以达到大量大小,特别是在较低的故事上,并且可能对墙壁的横向行为产生重要影响。轻型木材框架建设的历史用途是在低层建筑中。因此,很少有调查分析了高重力力或平面内弯矩对用于多层建筑设计的木剪力墙的横向行为的影响。本文介绍了光木框架剪力墙的循环横向行为的调查,专为中升建筑物而设计,经受大的轴向压缩载荷和面内弯矩。用循环横向位移方案,恒定压缩载荷和循环在线弯曲力矩进行实验测试八壁标本。分析了轴向压缩载荷和面内弯矩的影响。而且,壁长度和护套钉的间隔变化以研究这些变量对响应的影响。进行了一个数值研究,以表明这些效应如何影响中升木材建筑的响应。观察到壁的横向性能的改善与在没有压缩力的壁上测试的壁相比,没有弯曲力矩,显示刚度,承载能力和耗散能量的增加。

著录项

  • 来源
    《Engineering Structures》 |2021年第1期|112298.1-112298.16|共16页
  • 作者单位

    Pontificia Univ Catolica Chile Dept Struct & Geotech Engn Av Vicuna Mackenna Santiago 7820436 Chile|Pontificia Univ Catolica Chile UC Ctr Wood Innovat CIM Av Vicuna Mackenna Santiago 7820436 Chile;

    Pontificia Univ Catolica Chile Dept Struct & Geotech Engn Av Vicuna Mackenna Santiago 7820436 Chile|Pontificia Univ Catolica Chile UC Ctr Wood Innovat CIM Av Vicuna Mackenna Santiago 7820436 Chile|ANID FONDAP 15110017 Res Ctr Integrated Disaster Risk Management CIGID Av Vicuna Mackenna Santiago 7820436 Chile;

    Pontificia Univ Catolica Chile Dept Struct & Geotech Engn Av Vicuna Mackenna Santiago 7820436 Chile|Pontificia Univ Catolica Chile UC Ctr Wood Innovat CIM Av Vicuna Mackenna Santiago 7820436 Chile;

    Pontificia Univ Catolica Chile Dept Struct & Geotech Engn Av Vicuna Mackenna Santiago 7820436 Chile|Pontificia Univ Catolica Chile UC Ctr Wood Innovat CIM Av Vicuna Mackenna Santiago 7820436 Chile|Univ Technol Sydney 81 Broadway St Ultimo NSW 2007 Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Mid-rise timber buildings; Wood-frame shear walls; Cyclic behavior; Shear strength; Shear stiffness; Sturdy end-studs; Strong hold-downs; Vertical load; Bending moment;

    机译:中升木材建筑;木框架剪力墙;循环行为;剪切强度;剪切刚度;坚固的终端螺柱;强持续的持续;垂直载荷;弯矩;

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