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PREDICTION OF HOT CRACKS OF T-JOINTS IN FULL-PENETRATION WELDING PROCESS

机译:全熔透焊接过程中T型接头热裂纹的预测

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摘要

In this study, the influence of welding conditions on the formation of a pear-shaped bead crack is examined through experiments on full-penetration welding of T-joints. These problems are analyzed using the finite element method (FEM). The formation and growth of a pear-shaped bead crack in T-joints welded by full-penetration, high-current pulsed MAG (Metal Active Gas) welding is simulated using temperature-dependent interface elements, which are introduced in the thermal-elastic-plastic FEM analysis. The experimental results show that a pear-shaped bead crack does not occur when the heat input is greater than 2 500 J/mm, or when the penetration bead is formed. However, according to commonly accepted knowledge, both large heat input and a large penetration bead (deep penetration relative to the penetration width) lead to hot crack formation. To understand these experimental results, FEM simulations are conducted and the influences of heat input and the size of the penetration bead are investigated.
机译:在这项研究中,通过T型接头的全渗透焊接实验,研究了焊接条件对梨形珠状裂纹形成的影响。使用有限元方法(FEM)分析这些问题。使用温度相关的界面元素模拟了通过全渗透,高电流脉冲MAG(金属活性气体)焊接而在T型接头中焊接的梨形珠状裂纹的形成和增长,并将其引入到热弹性合金中。塑料有限元分析。实验结果表明,当热量输入大于2500 J / mm或形成渗透珠时,不会出现梨形珠裂纹。但是,根据公认的知识,大的热量输入和大的渗透焊道(相对于渗透宽度的深渗透)都会导致热裂纹的形成。为了理解这些实验结果,进行了有限元模拟,并研究了热量输入和渗透珠尺寸的影响。

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