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Experimental test of coupling effect on CLT angle bracket connections

机译:耦合对CLT角支架连接的影响的实验测试

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摘要

In this paper, the coupling effect of axial and lateral loading on Cross Laminated Timber (CLT) angle bracket connections is investigated through experimental tests. Monotonic and cyclic tests of the connections were carried out in shear, with different levels of constant force applied in tension simultaneously. Specimens subject to four different levels of tension forces were tested and the results were analyzed in terms of key mechanical characteristics of those connections including strength, stiffness, ductility, strength/stiffness degradation, equivalent viscous damping and energy dissipation. The results show that shear and tension for angle brackets are strongly coupled. Co-existent of tension force reduces the lateral strength and stiffness capacity of the connection significantly. Under complex loading, the gap between nail and wood embedment mitigates and the friction increases, resulting in the reduction of pinching effect; hence, the energy dissipation capacity drops under larger deformation. The study gives a better understanding of hysteretic behavior of angle bracket connections for CLT where rocking motions occur, and provides reliable data for future numerical analysis of CLT structures.
机译:在本文中,通过实验测试研究了轴向和横向载荷对交叉层压木材(CLT)角撑架连接的耦合作用。连接的单调和循环测试是在剪切力下进行的,同时在拉力上施加了不同水平的恒定力。测试了承受四种不同水平拉力的样品,并根据这些连接的关键机械特性(包括强度,刚度,延展性,强度/刚度降低,等效粘性阻尼和能量耗散)对结果进行了分析。结果表明,尖括号的剪力和拉力紧密耦合。张力的并存会大大降低连接的侧向强度和刚度。在复杂的载荷下,钉子和木材嵌入物之间的间隙减小,摩擦力增加,导致夹紧效果降低;因此,能量消耗能力在较大变形下下降。这项研究可以更好地了解发生摇摆运动的CLT尖括号连接处的滞后行为,并为CLT结构的未来数值分析提供可靠的数据。

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