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Elevated Temperature Effects on Performance of a Cross-Laminated Timber Floor-to-Wall Bracket Connections

机译:高温效果对交叉层压木材落地壁支架连接的性能

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Abstract Connections in mass timber structural systems transfer lateral forces from mass timber elements such as shear walls to floor diaphragms. Cross-laminated timber (CLT) is a prominent engineered mass timber material used to manufacture walls and floor assemblies. Fire performance research of CLT walls and floors has been abundant in recent years in an effort to develop an understanding of the performance of structural members under fire. Some fire-protected structural elements, including connections, may not be directly exposed to flames in a fire event but will experience elevated temperatures. There is limited research on elevated temperature performance of CLT connections, and consequently a lack of understanding of their fire performance in CLT structures. To aid in bridging this knowledge gap, in this study a series of cyclic shear tests were conducted on a CLT wall-to-floor bracket connection assembly to characterize thermal degradation according to a matrix of 28 exposure duration–temperature combinations. Two different methods were employed to develop force-displacement backbone models from the experimental hysteresis data. Models from both methods indicate an overall degradation of the connection performance in terms of load carrying capacity, elastic stiffness, ductility, and energy dissipation with increasing exposure to elevated temperatures.
机译:在大规模木结构系统中的抽象连接从诸如剪力墙到地板膜片的质量木材元件转移横向力。交叉层压木材(CLT)是用于制造壁和地板组件的突出的工程批量木材材料。近年来,CLT墙壁和地板的火灾性能研究始终努力了解对火灾中结构成员的表现。一些防火的结构元素,包括连接,可能不会直接暴露在火灾事件中的火焰中,但会升高温度。关于CLT连接的高温性能有限的研究,从而缺乏对CLT结构的火灾性能的理解。为了帮助桥接这种知识间隙,在本研究中,在CLT壁到地板支架连接组件上进行一系列循环剪切测试,以表征根据28曝光持续时间 - 温度组合的矩阵的热降解。采用两种不同的方法从实验滞后数据中开发力 - 位移骨架模型。来自两种方法的模型表明在负载承载能力,弹性刚度,延展性和能量耗散方面的连接性能的总体劣化,随着升高的温度而增加。

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