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Response and component characterisation of semi-rigid connections to tubular columns under axial loads

机译:轴向载荷下半刚性连接至管柱的响应和零件特性

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This paper examines the behaviour of open beam-to-tubular column bolted connections with angles subjected to direct tension and compression. Experimental and numerical studies as well as simplified mechanical assessments are presented. The response of seven tension tests and six compression tests on blind-bolted angle connections and combined channel/angle configurations are described and discussed in detail. Firstly, the experimental set-up, connection details and material properties are introduced followed by a detailed account of the results and observations from the tests. Based on the experimental results, the main behavioural patterns are identified and the salient response characteristics such as stiffness, capacity and failure mechanism are examined. It is shown that, for Hollo-bolted details, the distance between the blind-bolt and beam flange, the angle thickness and the column thickness have significant effects on the initial stiffness and tensile capacity of the connection. In addition, in the case of reverse channel connections, a direct relationship is deduced between the thickness of the channel component and the connection stiffness and capacity. It is also shown that the inelastic axial mechanisms exhibited by these types of connections are largely determined by the relative widths of the column/reverse channel and beam/angle components. Complementary finite element simulations are presented and utilised, together with the experimental findings, to highlight the main inelastic response characteristics for these forms of connections under direct axial action. Finally, the component-based method is extended to deal with angle connections between open beams and tubular columns employing Hollo-bolts or reverse channel components. To this end, expressions for the estimation of connection stiffness and capacity under axial actions are proposed and validated.
机译:本文研究了角度直接受到拉力和压力作用的开放式梁到管状柱螺栓连接的行为。介绍了实验和数值研究以及简化的机械评估。详细介绍了七种拉力测试和六种压缩测试对盲角连接和组合的通道/角度配置的响应。首先,介绍了实验装置,连接细节和材料特性,然后详细介绍了测试结果和观察结果。根据实验结果,确定了主要的行为模式,并研究了显着的响应特性,例如刚度,承受能力和破坏机理。结果表明,对于整体式螺栓连接的细节,百叶窗螺栓和横梁法兰之间的距离,角厚度和柱厚度对连接的初始刚度和抗拉能力都有重要影响。此外,在反向通道连接的情况下,可以在通道组件的厚度与连接刚度和容量之间得出直接关系。还显示出,这些类型的连接所表现出的非弹性轴向机制在很大程度上取决于柱/反向通道和梁/角度分量的相对宽度。提出并利用了互补的有限元模拟以及实验结果,以突出直接轴向作用下这些形式的连接的主要非弹性响应特性。最终,基于构件的方法扩展为使用Hollo-bolt或反向通道构件处理开放式梁与管状柱之间的角连接。为此,提出并验证了在轴向作用下估算连接刚度和承载力的表达式。

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