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Monotonic and cyclic behaviour of wood frame shear walls for mid-height timber buildings

机译:中高木结构木结构剪力墙的单调和循环特性

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摘要

The Chilean forestry industry has a significant presence in the economy of the country. Due to pollution problems and the high seismicity of the region, timber is a suitable material for new buildings. However, because of cultural customs and high demands of regulations, nowadays it is difficult to construct buildings higher than three stories in Chile. However, several international projects have shown that is feasible to construct mid-height timber buildings. Sturdy end studs and strong hold-downs are needed in mid-height wood buildings (up to 6 stories high) to resist large vertical and horizontal loads. However, design parameters provided by current seismic design provisions for those shear walls do not consider the effects of sturdy end studs and strong hold-downs in lateral strength and stiffness of the walls. In order to address this issue, a multidisciplinary team at the Catholic University of Chile has conducted an extensive experimental and numerical research program. This paper presents the results of seventeen in-plane monotonic and cyclic shear tests in wood frame shear walls of different lengths (1200, 2400 and 3600 mm) and 2470 mm height. The walls have five 2 x 6 '' end studs, strong hold-down anchorages and standard 11.1 mm structural OSB panels (1200 x 2400 mm) on both faces of the wall and with nails in the edge of the OSB panels spaced at 50 or 100 mm. The main objectives of this research are to evaluate the seismic response of these shear walls and to assess the current code expressions applied to shear walls with sturdy end studs to be used in mid-height timber buildings. The results show that, while cyclic loads reduce the monotonic shear strength of walls, cyclic loads do not influence the ultimate displacement and stiffness. The main benefits of a smaller nail spacing are the increase of the strength and delay of stiffness degradation. The unit shear was influenced by wall length: 1200 mm walls presented a better unit shear capacity than 2400 and 3600 walls, and there were not observable differences between 2400 and 3600 mm walls. The characteristic damping of the walls varied between 7 and 10%. Finally, the current design provisions underestimate the shear strength and overestimate the stiffness of walls to be used in mid-height timber buildings.
机译:智利林业在该国经济中占有重要地位。由于污染问题和该地区的高地震活动性,木材是新建建筑的合适材料。但是,由于文化习俗和法规的高要求,如今在智利很难建造三层以上的建筑物。但是,一些国际项目表明,建造中等高度的木结构建筑是可行的。在中等高度的木结构建筑(高达6层)中,需要坚固的立柱螺栓和牢固的固定装置,以抵抗较大的垂直和水平载荷。但是,当前的抗震设计规定为这些剪力墙提供的设计参数未考虑坚固的端螺栓以及墙体的横向强度和刚度的强压紧力的影响。为了解决这个问题,智利天主教大学的一个多学科团队进行了广泛的实验和数值研究计划。本文介绍了在不同长度(1200、2400和3600 mm)和2470 mm高的木结构剪力墙中进行的十七次面内单调和循环剪切测试的结果。墙壁在墙壁的两个面上都有五个2 x 6英寸的双头螺栓,牢固的固定锚固件和标准的11.1 mm结构OSB面板(1200 x 2400 mm),并且OSB面板边缘的钉子间距为50或50毫米。 100毫米这项研究的主要目的是评估这些剪力墙的地震响应,并评估当前用于中高强度木结构建筑的带有坚固端螺栓的剪力墙的规范表达式。结果表明,尽管循环荷载降低了墙体的单调抗剪强度,但循环荷载并没有影响极限位移和刚度。较小的钉子间距的主要好处是强度的增加和刚度下降的延迟。单位剪切力受壁长的影响:1200 mm壁比2400和3600壁具有更好的单位剪切能力,并且2400和3600 mm壁之间没有可观察到的差异。墙的特征阻尼在7%至10%之间变化。最后,当前的设计规定低估了抗剪强度,高估了用于中高木结构建筑的墙体的刚度。

著录项

  • 来源
    《Engineering Structures》 |2019年第15期|100-110|共11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|CONICYT FONDAP 15110017, Natl Res Ctr Integrated Nat Disaster Management C, 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;

  • 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-height timber buildings; Wood frame shear walls; Shear strength; Stiffness; Sturdy end studs; Strong hold-downs;

    机译:中等高度的木结构建筑;木结构剪力墙;抗剪强度;刚度;结实的螺柱;牢固的压紧力;

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