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Investigating the Hysteretic Behavior of Cross-Laminated Timber Wall Systems due to Connections

机译:研究由于连接引起的交叉层压木墙系统的滞后行为

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摘要

Cross-laminated timber (CLT) wall systems are composed of massive timber panels that are fastened together and to the horizontal elements (foundations or intermediate floors) with step joints and mechanical connections. Due to the high in-plane stiffness of CLT, the shear response of such systems depends strongly on the connections used. This paper proposes a numerical model capable of predicting the mechanical behavior and failure mechanisms of CLT wall systems. The wall and the element to which it is anchored are simulated using three-dimensional (3D) solid bodies, while the connections are modeled as nonlinear hysteretic springs. Typical racking tests of wall systems are reproduced by varying the assumptions used to schematize the behavior of the connections. Results are compared with test data published in the literature, and the differences are discussed. The influence of the boundary conditions (vertical load applied on top of the wall and friction at its base) and aspect ratio of the panel are investigated via a parametric numerical study. Finally, the performance of a wall system assembled with two CLT panels is analyzed, highlighting how the properties of the anchoring connections and vertical step joints affect the load-displacement response and energy dissipation.
机译:交叉层压木材(CLT)墙系统由牢固的木板组成,这些木板通过阶梯接头和机械连接固定在一起并固定在水平构件(基础或中间地板)上。由于CLT的高平面内刚度,此类系统的剪切响应在很大程度上取决于所使用的连接。本文提出了一种能够预测CLT墙系统力学行为和失效机理的数值模型。使用三维(3D)实体模拟墙和锚固到其上的元素,而将连接建模为非线性滞后弹簧。通过更改用于示意连接行为的假设,可以复制墙系统的典型机架测试。将结果与文献中公布的测试数据进行比较,并讨论差异。通过参数数值研究,研究了边界条件(墙顶部施加的垂直载荷以及墙底部的摩擦力)和面板纵横比的影响。最后,分析了由两个CLT面板组装而成的墙体系统的性能,强调了锚固连接和垂直阶梯节点的性能如何影响荷载-位移响应和能量耗散。

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