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Effect of shielding gas combination on microstructure and mechanical properties of MIG welded stainless steel 316

材料科学 焊接 惰性气体 母材 微观结构 冶金 保护气体 复合材料 奥氏体不锈钢 极限抗拉强度 拉伸试验 钨极气体保护焊 弯曲 热影响区 电弧焊 气体保护金属极电弧焊 焊条电弧焊 腐蚀 物理 原子物理学
作者
İsmail Açar,Behçet Gülenç
出处
期刊:MP MATERIALPRUEFUNG - MP MATERIALS TESTING [De Gruyter]
卷期号:63 (1): 97-101 被引量:7
标识
DOI:10.1515/mt-2020-0014
摘要

Abstract The quality of welded joints depends on the most optimal welding parameters and the selection of shielding gas type. The shielding gas was selected for joining stainless steels through gas metal arc welding methods by considering properties such as chemical-metallurgical interaction of shielding gas and the molten weld metal during the welding process, heat transmission capability of the gas and cost. In this study, the effect of different shielding gas combinations on the mechanical and microstructural properties of 316 austenitic stainless steel joined by the metal inert gas (MIG) welding method was investigated. In the welding process, pure argon (100 % Ar), 98.5 % Ar + 1.5 % H 2 and 95 % Ar + 5 % H 2 were used as shielding gases. Tensile, hardness, and bending tests were conducted to determine mechanical properties of the welded samples. In addition, metallographic examinations were carried out to detect the macrostructural and microstructural properties of weld zones. According to the results obtained from the study, the highest tensile strength was obtained from the joints welded using 100 % Ar shielding gas. When the addition of H 2 into the Ar gas increased, the tensile strength of the welded samples decreased. As a result of the tensile test, fractures occurred in the base metal in all welded samples. In all welding parameters, the hardness of the weld metal was lower as compared to the heat affected zone (HAZ) and the base metal. As a result of the bending test, crack and tearing defects were found in the weld zone.

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