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首页> 外文期刊>Journal of Constructional Steel Research >Stiffness and strength of composite truss beam to RC column connection in MRFs
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Stiffness and strength of composite truss beam to RC column connection in MRFs

机译:MRF中组合桁架梁与RC柱连接的刚度和强度

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The results of experimental and numerical investigations on the cyclic behavior of composite truss beam to reinforced concrete column connection of moment resisting frames are reported. The beams are constituted by a steel truss and end zone added rebar embedded within a concrete block cast in place, so that, after curing, the steel truss and the added rebar work together with the concrete matrix as reinforcement of the composite beam. Particularly, three specimens of two-span continuous beams were tested under monotonic and cyclic actions as three point bending test. With the goal to investigate about the behavior of the end zone of the beam integrated into a moment resisting frame before concrete casting strain gauges were placed on the steel reinforcements close to the joint, where plastic behavior was expected, in order to identify the role of steel truss elements in providing stiffness and strength in the plastic hinge region. Experimental results are reproduced by a fiber model. The results prove that in the joint region the bottom steel plate and the top truss chord are not effective in tension, while they are partially effective in compression. The large amount of unbounded reinforcing elements causes a concentration of plastic deformations in a small region at the beam edge; however, the beam exhibits large rotational ductility. In lacking of specific confining reinforcement at the beam end, when large rotations are experienced, the damage of unconfined concrete reduces section strength and ductility for cyclic action, causing a sudden loss of bonding between reinforcing rebars and damaged concrete. (C) 2015 Elsevier Ltd. All rights reserved.
机译:报道了组合桁架梁与抗弯框架钢筋混凝土柱连接的循环特性的试验和数值研究结果。梁由钢桁架和末端区域的钢筋组成,钢筋埋置在浇筑的混凝土砌块中,因此固化后,钢桁架和钢筋与混凝土基体一起作为复合梁的加强材料。特别地,在单调和循环作用下测试了三跨两跨连续梁的样本,作为三点弯曲测试。目的是研究在将混凝土浇铸应变计放置在靠近接缝的钢筋上之前,将梁端部区域集成到抗弯框架中的行为,预计钢筋会发生塑性行为,从而确定钢筋混凝土的作用。钢桁架元件在塑料铰链区域提供刚度和强度。实验结果通过纤维模型再现。结果证明,在连接区域中,底部钢板和顶部桁架弦对拉力无效,而对压缩却部分有效。大量的无边界增强元件会导致塑性变形集中在梁边缘的一小部分。但是,该梁具有较大的旋转延展性。由于在梁端没有特定的约束钢筋,当经历大的旋转时,未约束混凝土的损坏会降低截面强度和循环作用的延展性,从而导致钢筋和受损混凝土之间的粘结突然丧失。 (C)2015 Elsevier Ltd.保留所有权利。

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