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Effect of GMAW Shielding Gas on Tensile Strength of Dissimilar SS400 Carbon Steel and SUS304 Stainless Steel Butt Joint

机译:GMAW保护气体对不同SS400碳钢和SUS304不锈钢对接接头抗拉强度的影响

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摘要

An optimization of a gas metal arc welding (GMAW) process parameter is currently investigated for producing a dissimilar SS400/SUS304 steels joint because a requirement of a sound joint with higher tensile strength. A gas shielding type is one of the important parameter because it could produce a good arc, protect the weld pool from atmosphere and so on. So, this research work aimed to study an effect of the shielding gas type on the mechanical properties of the dissimilar SS400/SUS304 steels butt joint. A relation between microstructure and the mechanical properties of the butt joint was also investigated and compared. The summarized results are as follows. The optimized shielding gas that produced a maximum tensile stregnth of 550 MPa was 95%Ar+5%N_(2). Nitrogen gas that mixed to the shielding gas affected to decrease dendrite size and to increase the hardness and tensile strength of weld metal. Fracture characteristic of the joint produced by N_(2) mixed gas showed a larger deformation at the location that was closely the fracture location that implied a ductile behavior. The dissimilar SUS304/SS400 metals joint showed a low hardness base metal, a higher hardness interface and a highest hardness weld metal.
机译:由于需要具有更高抗拉强度的稳固接头​​,目前正在研究优化气体保护金属电弧焊(GMAW)工艺参数以生产不同的SS400 / SUS304钢接头。气体保护类型是重要的参数之一,因为它可以产生良好的电弧,保护焊缝不受大气影响等。因此,本研究旨在研究保护气体类型对不同SS400 / SUS304钢对接接头机械性能的影响。还研究并比较了对接接头的微观结构与力学性能之间的关系。总结结果如下。产生最大抗拉强度为550 MPa的优化保护气体为95%Ar + 5%N_(2)。混合到保护气体中的氮气会降低枝晶尺寸并增加焊接金属的硬度和抗拉强度。由N_(2)混合气体产生的接头的断裂特性在靠近断裂位置的位置处显示较大的变形,这暗示了韧性。不同的SUS304 / SS400金属接头显示出低硬度的母材,更高的硬度界面和最高硬度的焊接金属。

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