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Microstructures and mechanical properties of copper-stainless steel butt-welded joints by MIG-TIG double-sided arc welding

机译:MIG-TIG双面电弧焊接铜不锈钢对接接头的微观结构和力学性能

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摘要

Dissimilar copper/stainless steel metal joints with excellent double-sided forming can be obtained by MIG-TIG double-sided arc welding without grooving and preheating. The joints with welding-brazing and fusion welding modes based on the different joining mechanisms in the SS/weld interface can be found. The brazing stainless steel/weld interface shows a flat morphology, while the fusion SS/weld interface consists of a melted unmixed zone (MUZ) and shows a scraggy morphology. A joint free of cracks and pores can be obtained using the welding brazing mode, which is attributed to the low heat input during welding and the homogeneous composition in the weld zone. Tensile tests show that fracture occurs at the heat-affected zone (HAZ) at the copper side in all joints, and the optimal tensile strength reaches 229 MPa. All joints exhibit lower tensile strength and larger elongation than the Cu base metal due to softening in the HAZ on the copper side. As the amount of the softening mainly depends on the heat input, the welding-brazing joint with low heat input shows high resistance to softening.
机译:具有优异的双面成形的不同铜/不锈钢金属接头可以通过MIG-TIG双面电弧焊接获得,无需凹槽和预热。可以找到基于SS /焊接界面中的不同连接机构的带焊接钎焊和熔接焊接模式的接头。钎焊不锈钢/焊接界面显示平坦的形态,而融合SS /焊接接口包括熔化的解密区(MUZ),并显示出刮刀形态。可以使用焊接钎焊模式获得没有裂缝和孔的接头,其归因于焊接期间的低热量和焊接区中的均匀组合物。拉伸试验表明,骨折发生在所有接头中铜侧的热影响区(HAZ),并且最佳拉伸强度达到229MPa。由于铜侧的HAZ中的软化,所有接头均表现出较低的拉伸强度和比Cu基金属更大的伸长率。随着软化量主要取决于热输入,具有低热输入的焊接钎焊接头显示出高抗软化。

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