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Influence of Weld Sequence on the Low-Cycle Fatigue Failure of WUF-B Connections

机译:焊缝顺序对WUF-B连接低周疲劳失效的影响

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摘要

Abstract Experiments on post-Northridge welded unreinforced flange bolted web (WUF-B) connections demonstrated a new low-cycle fatigue (LCF) crack initiation mechanism with final rupture occurring either near the weld access hole or the weld regions. Post-Northridge connection research reports and related commentary indicated that the weld and heat-affected zone (HAZ) conditions might be contributing factors in LCF-initiated failures of the modified WUF-B connections. The experimental study reported herein investigated the influence of weld sequence on the fatigue failure of the WUF-B connections. Two exterior WUF-B connections were fabricated using different weld sequences in laying the complete joint penetration welding between the beam and column flanges. These connections were tested under a constant-amplitude displacement-controlled loading protocol until crack initiation. Both specimens failed by cracking at the weld access hole, one in a brittle manner and the other in a ductile manner. Analysis of the recorded data demonstrated the influence of weld sequence on strain responses at the weld toe and weld access hole regions. Accumulation of strain with cycles, which is a phenomenon known as strain ratcheting, was observed near these locations in both tests. Recorded strain responses near the crack locations indicated the cause of earlier failure of one specimen compared with the other. Finally, future research needs in mitigating the influence of welding sequence on fatigue failure of welded steel moment connections are discussed.
机译:摘要 北岭后焊接无筋法兰螺栓腹板(WUF-B)连接试验表明,该连接具有一种新的低周疲劳(LCF)裂纹萌生机理,最终破裂发生在焊缝通道孔附近或焊缝区域附近。后北岭连接研究报告和相关评论表明,焊接和热影响区(HAZ)条件可能是LCF引发的改进的WUF-B连接失效的因素。本文报道的实验研究考察了焊接顺序对WUF-B连接疲劳失效的影响。在梁和柱翼缘之间铺设完整的接头熔透焊时,采用不同的焊接顺序制作了两个外部WUF-B连接。这些连接在恒定振幅位移控制加载协议下进行测试,直到裂纹萌生。两个试样都因焊缝通路孔处开裂而失效,一个是脆性,另一个是延展性。对记录数据的分析表明,焊缝顺序对焊趾和焊缝检修孔区域的应变响应有影响。在两次测试中,在这些位置附近都观察到应变随循环积累,这是一种称为应变棘轮的现象。在裂纹位置附近记录的应变响应表明,与另一个试样相比,一个试样更早失效的原因。最后,讨论了未来在降低焊接顺序对焊接钢弯矩连接疲劳失效影响方面的研究需求。

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