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Bolted moment connections in drive-in and drive-through steel storage racks

机译:驶入和驶入式钢制存放架中的螺栓力矩连接

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摘要

The stability of steel storage racks, which are often unbraced, may depend solely on the pallet beam to upright connector and on the stiffness of the base plate to floor connection. This paper presents experimental results from cyclic tests performed on portal beam to upright bolted moment connections intended for cold-formed steel drive-in and drive-through storage racks. In storage racks, portal beams are typically connected to uprights by "tab connectors", which are costly to manufacture and experience initial looseness. By simply bolting the portal beams to the uprights, bolted moment connections may represent a cost-effective alternative to "tab connectors". A literature review shows that bolted moment connections between cold-formed steel members are economical and feasible. However, experimental results show a significant amount of looseness in the connection after an initial high moment-rotational stiffness. Being slender structures, storage racks are sensitive to the second-order P-? effect, and international racking specifications require the initial looseness of the tab connectors to be considered when analysing the stability of the rack in the down-aisle direction (sway motion). The non-linear cyclic behaviour of bolted moment connections is presented and explained herein. Based on finite element results, it is shown that, for drive-in and drive-through racks, the looseness in bolted moment connections can be ignored in ultimate limit states design. Finally, the paper concludes with proposing two methods, with different degree of complexity, for the design of drive-in and drive-through racks with bolted portal beam to upright bolted moment connections.
机译:通常没有支撑的钢制储物架的稳定性可能完全取决于托板梁至直立连接器以及底板至地板连接的刚度。本文介绍了对用于冷弯型钢推入式和穿越式储物架的门形梁到直立螺栓力矩连接进行的循环测试的实验结果。在储物架中,门式横梁通常通过“搭扣连接器”连接到立柱,这在制造上成本高昂,并且会经历初期的松动。通过简单地将门架梁螺栓连接到立柱上,用螺栓连接的力矩连接可能是“凸耳连接器”的一种经济有效的替代方案。文献综述表明,冷弯型钢构件之间的螺栓矩连接是经济可行的。然而,实验结果表明,在初始的高力矩-旋转刚度之后,连接处出现大量松动。由于是细长结构,所以存储架对二阶P-?敏感。因此,在分析机架在向下通道方向(摇摆)时的稳定性时,需要考虑凸耳连接器的初始松动。本文介绍并解释了螺栓力矩连接的非线性循环行为。根据有限元结果显示,对于上入式和穿入式机架,在极限极限状态设计中可以忽略螺栓力矩连接的松动。最后,本文最后提出了两种设计方法,它们的复杂程度不同,用于设计带有螺栓门梁到直立螺栓力矩连接的入入式和穿入式机架。

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