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Experimental collapse response of post-and-beam mass timber frames under a quasi-static column removal scenario

机译:准静态柱去除场景下的横梁后块木材框架的实验崩溃响应

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摘要

Mid-rise to tall mass timber buildings, which are constructed from engineered solid wood products, such as Laminated Veneer Lumber (LVL), Glued laminated timber (Glulam) and Cross Laminated Timber (CLT), have recently gained international popularity. As the height of timber buildings increases, so do the consequences of a progressive collapse event. While collapse mechanisms of concrete and steel buildings have been widely researched, limited studies have been carried out on mass timber buildings. This paper presents and discusses the experimental results performed on a series of 2D timber frame substructures, used in post-and-beam mass timber buildings and scaled down to fit the purpose of this research, under a middle column removal scenario. The behaviour of the frames and the ability of three types of commercially available beam-to-column connections and a proposed non-commercial novel connection, to develop catenary action under large deformations are reported. Furthermore, the system capacity in terms of the uniformly distributed pressure is also discussed. The test results showed that only the proposed connector was able to sustain the design pressure in international design specifications if no dynamic increase factor was considered, and therefore presented a potential solution to improve the robustness of post-and-beam timber buildings.
机译:中升到高大的大质量木材建筑,由工程实木制品,如层压贴层木材(LVL),胶合层压木材(GLULAM)和交叉层压木材(CLT),最近获得了国际普及。随着木材建筑的高度的增加,渐进崩溃事件的后果所以做出后果。虽然已经过广泛研究了混凝土和钢制建筑物的崩溃机制,但在大规模木材建筑上进行了有限的研究。本文介绍并讨论了在一系列2D木材框架子结构上进行的实验结果,用于后梁质量木材建筑物,并按中间列移除场景下缩小以适应本研究的目的。报道了框架的行为和三种类型的市售光束连接和提出的非商业新颖连接的能力,以在大变形下开发膨胀作用。此外,还讨论了均匀分布的压力方面的系统容量。试验结果表明,如果没有考虑动态增加因子,只有所提出的连接器能够维持国际设计规范中的设计压力,因此提出了改善后束后木材建筑物的稳健性的潜在解决方案。

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