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首页> 外文期刊>Journal of structural engineering >Block Shear Capacity of Bolted Connections in Cold-Reduced Steel Sheets
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Block Shear Capacity of Bolted Connections in Cold-Reduced Steel Sheets

机译:冷轧薄钢板螺栓连接的块剪切能力

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摘要

This paper examines the mechanisms for block shear failures of bolted connections in steel plates postulated in the design equations specified in the North American, European, and Australian steel structures codes. It explains that there is only one feasible mechanism for the limit state of conventional block shear failure, that which involves tensile rupture and shear yielding, regardless of the steel material ductility. It describes the fundamental shortcomings of various code equations for determining the block shear capacity of a bolted connection. Based on the tensile rupture and shear yielding mechanism, an in-plane shear lag factor, and the active shear resistance planes identified in the present work, this paper proposes a rational equation that is demonstrated to provide more accurate results than all the code equations in predicting the block shear capacities of bolted connections in G450 steel sheets subjected to concentric loading. The resistance factor of 0.8 for the proposed equation is computed with respect to the LRFD approach given in the North American specification for the design of cold-formed steel structures.
机译:本文研究了北美,欧洲和澳大利亚钢结构规范中指定的设计方程式中假定的钢板螺栓连接的砌块剪切破坏机制。它解释说,对于常规块体剪切破坏的极限状态,只有一种可行的机制,即涉及拉伸断裂和剪切屈服,而与钢材的延展性无关。它描述了用于确定螺栓连接的砌块剪切能力的各种代码方程式的基本缺点。基于本文中确定的拉伸断裂和剪切屈服机制,面内剪切滞后因子以及有效抗剪切力平面,本文提出了一个有理方程,该理方程被证明比所有的规范方程都能提供更准确的结果。预测承受同心载荷的G450钢板中螺栓连接的整体抗剪承载力。相对于北美规范中有关冷弯钢结构设计的LRFD方法,计算出了所建议方程式的阻力系数0.8。

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