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首页> 外文期刊>Journal of structural engineering >Experimental Performance and Structural Analysis of Plywood-Coupled LVL Walls
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Experimental Performance and Structural Analysis of Plywood-Coupled LVL Walls

机译:胶合板LVL墙的实验性能与结构分析。

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摘要

Prestressed-laminated timber (Pres-Lam) design has recently been adopted for multistory timber buildings based on ongoing research at the University of Canterbury, New Zealand. This system combines large timber members with unbonded posttensioning for recentering and ductile connections for energy dissipation. This paper describes the experimental, analytical, and numerical investigation of posttensioned laminated veneer lumber (LVL) walls coupled with plywood sheets subjected to both quasi-static cyclic and pseudodynamic seismic testing protocols. Different arrangements of nails, used to connect the plywood coupling panels with the posttensioned timber walls, have been tested to compare their energy dissipation characteristics. Simplified numerical macromodels with rotational spring elements have been developed to accurately represent the recentering contribution from the posttensioning and the pinched hysteric contribution of the nailed connections. The testing results provided good seismic performance, characterized by negligible damage of the structural members and very small residual deformations following drift levels of 2-2.5%. The only components significantly damaged, as designed, were the nailed connections between the plywood sheets and the LVL walls. These plywood sheets can be easily and cheaply removed and replaced with new sheets after an earthquake, creating a major reduction in postearthquake downtime. Combining these benefits together, the concept has potential for consideration as a cost-effective, high-performance solution for multistory timber buildings. (C) 2015 American Society of Civil Engineers.
机译:基于新西兰坎特伯雷大学的持续研究,预应力层压木材(Pres-Lam)设计最近已用于多层木材建筑。该系统将大型木材构件与无粘结的后张拉结合在一起,以实现重新导向和延性连接,从而降低了能量消耗。本文描述了经受了准静态循环和拟动力地震测试协议的后张单板木材(LVL)墙与胶合板的实验,分析和数值研究。测试了用于将胶合板连接面板与后张紧的木墙连接起来的不同钉子排列方式,以比较它们的能量耗散特性。已经开发出带有旋转弹簧元件的简化数值宏模型,以精确表示钉连接的后张和捏滞滞回贡献的最新贡献。测试结果提供了良好的抗震性能,其特征在于结构构件的损坏可忽略不计,并且在2-2.5%的漂移水平之后残余变形很小。按照设计,唯一被严重损坏的组件是胶合板和LVL墙之间的钉子连接。这些胶合板可以轻松,便宜地拆除,并在地震后更换为新板,从而大大减少了地震后的停机时间。将这些优点结合在一起,该概念有可能被认为是用于多层木结构建筑的经济高效的高性能解决方案。 (C)2015年美国土木工程师学会。

著录项

  • 来源
    《Journal of structural engineering》 |2016年第2期|04015123.1-04015123.11|共11页
  • 作者单位

    BRANZ Ltd, 1222 Moonshine Rd,RD1, Porirua 5381, New Zealand;

    Univ Canterbury, Dept Civil & Nat Resources Engn, Christchurch 8041, New Zealand;

    Univ Canterbury, Dept Civil & Nat Resources Engn, Christchurch 8041, New Zealand;

    Univ Aquila, Dept Civil Construct Architectural & Environm Eng, I-67100 Laquila, Italy|Univ Sassari, Dept Architecture & Planning, Alghero, Italy;

    Univ Canterbury, Dept Civil & Nat Resources Engn, Christchurch 8041, New Zealand;

    Univ Canterbury, Dept Civil & Nat Resources Engn, Christchurch 8041, New Zealand;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Coupled walls; Posttensioning; Seismic design; Connections; Wood structures;

    机译:耦合墙;后张法;抗震设计;连接;木结构;

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