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Mechanics-based analytical models for balloon-type cross-laminated timber (CLT) shear walls under lateral loads

机译:横向载荷下的球囊型交叉层压木材(CLT)剪切墙的基于机械的分析模型

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Besides platform-type construction method, a rarely investigated balloon-type method, in which the walls are continuous for the entire height of the building and the floor panels are attached to the walls at each floor, can also be used to construct Cross Laminated Timber (CLT) buildings. The balloon-type method endures several key advantages to the CLT buildings, such as reducing connections and avoiding accumulating compression perpendicular to grain in the floors, thus being a viable solution for high-rise buildings. In this paper, two mechanics-based analytical models (rigid- and elastic-base models) were developed for predicting the deflection and resistance of balloon-type CLT shear wall system. The developed analytical models incorporate the contribution of the wall bending and shear deformation, as well as contribution from the wall rocking and sliding, and the slip in the vertical joints between panels, on the overall wall deflection. The resistance of this system was assumed to be governed by the hold-downs, shear connectors, and vertical joints, if present. The analytical models were validated against the test results of four balloon-type CLT shear walls in two configurations tested under monotonic or cyclic load. The verified analytical models were used to investigate the influence of vertical load, wall aspect ratio, and vertical joint on the structural performance of the balloon-type CLT shear wall. The developed analytical models provide a mechanics-based approach for researchers and engineers to predict the structural performance of balloon-type CLT shear walls. The wall test results and the parameter analysis results gave a valuable insight into the structural behavior of the balloon-type CLT shear walls.
机译:除了平台型施工方法外,很少调查的气球型方法,其中墙壁是连续的建筑物的整个高度,地板面板连接到每个楼层的墙壁上,也可用于构建交叉层压木材(CLT)建筑物。球囊型方法持续到CLT建筑物的若干关键优势,例如还原连接并避免垂直于地板中的粒度的压缩,因此是高层建筑的可行解决方案。在本文中,开发了两种基于机械基础的分析模型(刚性和弹性基础型号),用于预测气球型CLT剪力墙系统的偏转和电阻。开发的分析模型包括墙壁弯曲和剪切变形的贡献,以及从墙壁摇摆和滑动的贡献,以及面板之间的垂直接头中的滑动,在整体壁偏转上。假设该系统的电阻被阻挡,剪切连接器和垂直接头(如果存在)管辖。在单调或循环负载下测试的两种配置中的四个气球型CLT剪力墙的测试结果验证了分析模型。经过认证的分析模型用于研究垂直载荷,壁纵横比和垂直接头对球囊型CLT剪力墙结构性能的影响。开发的分析模型为研究人员和工程师提供了一种基于机制的方法,以预测气球型CLT剪力墙的结构性能。墙壁测试结果和参数分析结果对球囊型CLT剪力墙的结构行为进行了有价值的见解。

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