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首页> 外文期刊>Welding in the World: Journal of the International Institute of Welding: Journal of the International Institute of Welding >Applicability of partial joint penetration groove welded joints to beam-to-RHS column connections and assessment of safety from brittle fracture
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Applicability of partial joint penetration groove welded joints to beam-to-RHS column connections and assessment of safety from brittle fracture

机译:部分接头穿透槽焊接接头对梁到RHS柱连接的适用性以及脆性断裂的安全性评估

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摘要

This paper concerns the applicability of partial joint penetration (PJP) groove welds to bearn-to-column connections. Two full-sized beam-to-column connections, with rectangular hollow section columns and PJP groove welds at the ends of the beam flanges, were tested under cyclic loads. All the specimens were made of one-sided connections. When the unfused regions created by PJP groove welds were reinforced by fillet welds so that the welded joints have a sufficient cross-sectional area, the connections showed sufficient deformation capacity, although ductile cracks initiated at weld toes and grew stably. Test results were reproduced well by non-linear FE analyses. Strains sustained at points around internal discontinuities were found to be low because of greater cross-sectional areas of welded joints compared with the cross-sectional area of the beam flanges. Fracture toughness properties of numerically modeled connections were evaluated by using a failure assessment diagram approach, which was modified by considering the effect of enhanced apparent toughness of material due to the loss of crack tip constraint. Both the test results and the fracture mechanics-based assessment demonstrated that it is unlikely to initiate brittle fracture at these discontinuities when materials used in the connections have sufficient fracture toughness.
机译:本文涉及部分接头焊缝(PJP)坡口焊缝对轴对柱连接的适用性。在循环载荷下测试了两个全尺寸的梁到柱连接,这些连接具有矩形中空截面柱和在梁翼缘末端的PJP坡口焊缝。所有样本均由单侧连接制成。当通过PJP坡口焊缝形成的未熔合区域通过角焊缝进行加固以使焊接接头具有足够的横截面面积时,尽管韧性焊缝在焊趾处开始出现并稳定增长,但接头仍具有足够的变形能力。通过非线性有限元分析可以很好地再现测试结果。发现在内部不连续点周围维持的应变较低,因为与梁法兰的横截面相比,焊接接头的横截面面积更大。通过使用失效评估图方法评估了数值模型连接的断裂韧性特性,该方法通过考虑由于裂纹尖端约束的丧失而提高了材料的表观韧性而对其进行了修改。测试结果和基于断裂力学的评估均表明,当用于连接的材料具有足够的断裂韧性时,不太可能在这些不连续处引发脆性断裂。

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