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Monotonic and cyclic tests on beam-column joints of industrial pallet racks

机译:工业托盘架梁柱节点的单调和循环测试

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摘要

Pallet racks are characterized by boltless beam-column connections and the extensive use of thin-walled cold-formed steel members. Due to the great number of beam-end connector types and member geometries, a reliable evaluation of their structural behavior, especially under seismic loads, requires a thorough modeling of beam-column joints, whose moment-rotation curves can be reliably assessed only through experimental tests. In this paper, the authors present results of monotonic and cyclic tests on four different types of industrial rack joints. Tested joints differ from one another in the type of beam-connector, which is obtained by folding the beam end or is welded to the beam-end section with different welding layouts. Moreover, joints differ in the number of tabs and the relative thickness of the upright and the beam-end connector. Experimental results from cyclic tests allows for moment-rotation curves of joints to be accurately identified, confirming that they are significantly different from traditional steel framed buildings due to pinching in hysteresis loops. Obtained curves can be used for reliable modeling of joints in seismic analyses of steel pallet racks. As producers of steel rack structures are interested in reducing the total welding length of beam-end connectors for time efficiency and cost saving, the influence of the welding layout of beam-end connectors on the structural response and failure mode of joints has also been investigated. Finally, some joints have also been equipped with additional bolts to evaluate their influence on the bearing capacity, initial elastic stiffness and dissipated energy per cycle. (C) 2017 Elsevier Ltd. All rights reserved.
机译:托盘架的特点是无螺栓的梁柱连接和薄壁冷弯型钢构件的广泛使用。由于梁端连接器类型和构件的几何形状多种多样,对其结构行为(尤其是在地震荷载下)的可靠评估需要对梁柱节点进行彻底的建模,其弯矩-旋转曲线只能通过实验来可靠地评估测试。在本文中,作者介绍了四种不同类型的工业齿条接头的单调和循环测试结果。经过测试的接头在横梁连接器类型上有所不同,横梁连接器是通过折叠横梁末端获得的,或者以不同的焊接布局焊接到横梁末端部分。此外,接头的接片数量以及立柱和梁端连接器的相对厚度不同。循环测试的实验结果可以准确识别接缝的弯矩-转弯曲线,从而确认它们由于滞回环的挤压而与传统的钢结构建筑有显着差异。所获得的曲线可用于在钢制托盘机架的地震分析中对接头进行可靠的建模。由于钢架结构的生产商有兴趣减少梁端连接器的总焊接长度以节省时间并节省成本,因此还研究了梁端连接器的焊接布局对接头的结构响应和破坏模式的影响。最后,一些关节还配备了额外的螺栓,以评估它们对每个循环的承载力,初始弹性刚度和耗散能量的影响。 (C)2017 Elsevier Ltd.保留所有权利。

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