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Design of fillet welds in RHS-to-RHS moment T-connections under branch in-plane bending

机译:分支面内弯曲下RHS-to-RHS矩T型连接中的角焊缝设计

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Non-linear finite element (FE) models were developed to assess the AISC 360-16 Chapter K design approach for fillet welds in rectangular hollow section (RHS) moment T-connections under branch in-plane bending. The FE models were validated by comparison of the weld fracture moments, load-deflection responses, and spot-strain measurements to results from six previous, large-scale, weld-critical experiments. Based on all available experimental and FE data, the AISC 360-16 design approach is shown to be over-conservative. A key reason for this is that it does not account for bearing between the branch and chord on the compression side of the connection. New design formulae that take bearing into account are hence proposed. These formulae are shown to provide more accurate predictions of fillet weld strength in RHS moment T-connections under branch in-plane bending, and yet still achieve a safety (reliability) index that meets the AISC's target value of 4.0 for connections. The scope of this paper covers connections with all-around fillet welds and branch-to-chord width ratios up to 0.85. Crown Copyright (C) 2019 Published by Elsevier Ltd. All rights reserved.
机译:开发了非线性有限元(FE)模型,以评估AISC 360-16第K章在分支面内弯曲下矩形空心截面(RHS)弯矩T型连接中的角焊缝设计方法。通过比较焊缝断裂力矩,载荷挠度响应和点应变测量结果与先前六个大规模的焊接关键性实验的结果,验证了有限元模型。根据所有可用的实验数据和有限元数据,AISC 360-16设计方法被证明过于保守。这样做的一个关键原因是,它不考虑连接的压缩侧上的支路和弦之间的轴承。因此,提出了考虑到影响的新设计公式。这些公式显示出可以更准确地预测RHS弯矩T型连接在分支面内弯曲下的角焊缝强度,但仍能达到满足AISC的4.0目标值的安全性(可靠性)指标。本文的范围涵盖了与全方位角焊的连接以及分支与弦的宽度比最高为0.85的连接。 Crown版权所有(C)2019,由Elsevier Ltd.出版。保留所有权利。

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