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Behaviour of open beam-to-tubular column angle connections under combined loading conditions

机译:组合荷载条件下开放式梁与管柱角连接的行为

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This paper examines the behaviour of two types of practical open beam-to-tubular column connection details subjected to combined moment, axial and/or shear loads. Detailed continuum finite element models are developed and validated against available experimental results, and extended to deal with fiexural, axial and shear load interactions. A numerical investigation is then carried out on the behaviour of selected connections with different stiffness and strength characteristics under various load combination scenarios. The influence of applied levels of axial tensile or compressive loads on the bending stiffness and capacity is examined and discussed. Additionally, the interaction effects between shear forces and co-existing bending and axial loads are examined and shown to be comparatively insignificant in terms of stiffness and capacity in most cases. It is also shown that the range of connections considered in this paper can provide rotational ductility levels in excess of those required under typical design scenarios. Based on these findings, a simplified component-based representation is proposed and described, and its ability to represent the connection response under combined loading is verified using results from detailed numerical simulations.
机译:本文研究了在组合弯矩,轴向和/或剪力作用下两种实用的开放式梁到管状柱连接细节的行为。详细的连续体有限元模型已开发并针对可用的实验结果进行了验证,并扩展为处理弯曲,轴向和剪切载荷相互作用。然后,在各种载荷组合情况下,对具有不同刚度和强度特性的选定连接的行为进行了数值研究。研究并讨论了轴向拉伸或压缩载荷的施加水平对弯曲刚度和抗弯能力的影响。另外,检查了剪切力与同时存在的弯曲和轴向载荷之间的相互作用,在大多数情况下,在刚度和承载力方面,作用相对较小。还表明,本文所考虑的连接范围可以提供超出典型设计方案所需的旋转延展性水平。基于这些发现,提出并描述了一种简化的基于组件的表示形式,并使用详细的数值模拟结果验证了其在组合载荷下表示连接响应的能力。

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