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Lateral-load resistance of cross-laminated timber shear walls

机译:交叉层压木剪力墙的侧向抗力

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摘要

Cross-laminated timber shear wall systems are used as a lateral load resisting system in multistory timber buildings. Walls at each level typically bear directly on the floor panels below and are connected by nailed steel brackets. Design guidance for the lateral-load resistance of such systems is not well established and design approaches vary among practitioners. Two cross-laminated two-story timber shear wall systems are tested under vertical and lateral load, along with pullout tests on individual steel connectors. Comprehensive kinematic behavior is obtained from a combination of discrete transducers and continuous field displacements along the base of the walls, obtained by digital image correlation, giving a measure of the length of wall in contact with the floor below. Existing design approaches are evaluated. A new offset-yield criterion based on acceptable permanent deformations is proposed. A lower bound plastic distribution of stresses, reflecting yielding of all connectors in tension and cross-grain crushing of the floor panel, is found to most accurately reflect the observed behavior.
机译:交叉层压的木材剪力墙系统在多层木结构建筑中用作侧向抵抗系统。通常,每个级别的墙都直接支撑在下面的地板上,并通过钉钢支架连接。对于此类系统的抗侧向载荷的设计指导尚不完善,设计方法因从业人员而异。在垂直和横向载荷下对两个交叉层压的两层木剪力墙系统进行了测试,并对各个钢制连接器进行了拉拔测试。综合的运动学特性是通过离散换能器和沿墙体底部的连续场位移的组合而获得的,该位移是通过数字图像相关性获得的,给出了与下方地板接触的墙体长度的度量。评估现有的设计方法。提出了基于可接受的永久变形的新的偏移屈服准则。应力的下限塑性分布反映了所有连接器在地板面板受拉和横纹压碎时的屈服,可以最准确地反映观察到的行为。

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