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Capacity-Based Design for Cross-Laminated Timber Buildings

机译:基于容量的交叉层压木材建筑设计

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The use of cross-laminated timber (CLT) in residential and non-residential buildings is becoming increasingly popular in North America. While the 2016 supplement to the 2014 edition of the Canadian Standard for Engineering Design in Wood, CSAO86, provides provisions for CLT structures used in platform type applications, it does not provide guidance for the in-plane stiffness and strength of CLT shearwalls. The research presented in this paper investigated the in-plane stiffness and strength of CLT shearwalls with different connections for platform-type construction. Finite element analyses were conducted where the CLT panels were modelled as an orthotropic elastic material, and non-linear springs were used for the connections. The hysteretic behaviour of the connections under cyclic loading was calibrated from quasi-static tests; the full model of wall assemblies was calibrated using experimental tests on CLT shearwalls. A parametric study was conducted that evaluated the change of strength and stiffness of walls with the change in a number of connectors. Finally, a capacity-based design procedure is proposed that provides engineers with guidance for designing platform-type CLT buildings. The philosophy of the procedure is to design the CLT buildings such that all non-linear deformations and energy dissipation occurs in designated connections, while all other connections and the CLT panels are designed with sufficient over-strength to remain linear elastic.
机译:在住宅和非住宅建筑中使用交叉层压木材(CLT)在北美越来越受欢迎。虽然2016年的2014年版用于木材的工程设计的加拿大工程设计标准,但为平台类型应用中使用的CLT结构提供了CLT结构的规定,它没有为CLT Shearwalls的面内刚度和强度提供指导。本文提出的研究研究了CLT Shearwall的平面刚度和强度,具有不同的平台型结构的不同连接。进行有限元分析,其中CLT面板被建模为正交弹性材料,并且使用非线性弹簧用于连接。循环载荷下的连接的滞后行为从准静态试验校准;使用CLT Shearwalls的实验测试校准墙壁组件的完整模型。进行了参数研究,评估墙壁的强度和刚度变化随着多个连接器的变化。最后,提出了一种基于容量的设计程序,为工程师提供了设计平台型CLT建筑的指导。该程序的哲学是设计CLT建筑,使得所有非线性变形和能量耗散在指定的连接中发生,而所有其他连接和CLT面板都具有足够的过强度以保持线性弹性。

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