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Experimental study of steel-timber composite (STC) beam to steel column joints having a flush end-plate

机译:具有齐平端板的钢木组合梁到钢柱节点的试验研究

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摘要

In recent published works, the feasibility and composite action of steel-timber composite (STC) systems have been demonstrated through push-out tests on STC joints and bending tests on STC beams subjected to sagging (positive) bending moment. However, the behaviour of STC beams subjected to negative bending moments, where the comparatively high tensile strength of the timber slab (compared to a concrete slab) can significantly increase the bending moment capacity and stiffness of STC beam-to-column joints, remains unexplored. Accordingly, this paper investigates the negative bending moment capacity, stiffness and the rotational capacity of STC beam-to-column joints with flush end-plates. Six full-scale STC beam-to-column cruciform joints were fabricated and subjected to monotonically increasing static loading up to failure. The cross-laminated timber (CLT) slab width, the connection type between the CLT panels across the column (either steel plate or gluing) and degree of composite action between the CLT-slab and the steel beam were the main variables considered in the experimental program. It is shown that the composite action between the CLT-slabs and steel beam has a minor influence on the negative sending capacity and initial stiffness of the beam-to-column connection, but the type of CLT slab-to-CLT slab connection (spline with steel plate and/or glued butt joint) has a major influence on the structural behaviour of the STC beam-to-column connections.
机译:在最近发表的著作中,钢木复合材料(STC)系统的可行性和复合作用已通过对STC节点的推挤测试和对承受垂度(正)弯矩的STC梁进行的弯曲测试得到了证明。但是,STC梁承受负弯矩时的性能尚待探索,在这种情况下,木材板(相对于混凝土板)的相对较高的抗拉强度可以显着提高STC梁至柱节点的弯矩能力和刚度。 。因此,本文研究了带有齐平端板的STC梁柱联轴节的负弯矩能力,刚度和旋转能力。制作了六个完整的STC束至柱十字形接头,并使其单调增加静态载荷直至失效。交叉层压木材(CLT)板的宽度,跨柱的CLT板之间的连接类型(钢板或胶合)以及CLT板和钢梁之间的复合作用程度是实验中考虑的主要变量程序。结果表明,CLT板和钢梁之间的复合作用对梁到柱连接的负传递能力和初始刚度影响较小,但CLT板到CLT板连接的类型(样条钢板和/或涂胶对接接头)对STC梁到柱连接的结构性能有重大影响。

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