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Cyclic Behavior of CLT Wall Systems: Experimental Tests and Analytical Prediction Models

机译:CLT墙系统的循环行为:实验测试和分析预测模型

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An experimental program was performed at IVALSA Trees and Timber Institute on single and coupled cross-laminated (CLT) wall panels with different anchoring systems and different types of joints between adjacent panels. The mechanical properties of CLT walls were assessed and are critically discussed in the paper. The connector layout and the design of the screwed vertical joints were found to markedly affect the overall behavior of the structural system. The in-plane deformations of CLT panels were almost negligible, whereas concentration of forces and deformations mainly occurred in the connections. Advanced analytical models for nonlinear pushover analysis of CLT wall systems were developed and verified against test results. The models take into account all stiffness and strength components of connectors, as well as the bending and shear deformation of the panels. A parametric study of CLT wall systems with different aspect ratios and wall segmentation was performed, showing that segmentation of CLT walls decreases their stiffness and strength but significantly improves their deformation capacity. (C) 2015 American Society of Civil Engineers.
机译:在IVALSA Trees and Timber Institute上,对具有不同锚固系统和相邻面板之间不同类型接缝的单层和耦合交叉层压(CLT)墙面板执行了一项实验程序。评估了CLT墙的机械性能,并在本文中进行了严格的讨论。发现连接器的布局和垂直连接螺钉的设计显着影响结构系统的整体性能。 CLT面板的面内变形几乎可以忽略不计,而力和变形的集中主要发生在连接处。开发了用于CLT墙系统的非线性下垂分析的高级分析模型,并针对测试结果进行了验证。该模型考虑了连接器的所有刚度和强度分量,以及面板的弯曲和剪切变形。对具有不同纵横比和墙分割的CLT墙系统进行了参数研究,显示CLT墙的分割会降低其刚度和强度,但会显着提高其变形能力。 (C)2015年美国土木工程师学会。

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