Effect of Different Welding Parameters on the Mechanical and Microstructural Properties of Stainless Steel 304H Welded Joints

S. Rizvi, S. Tewari
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引用次数: 10

Abstract

In this research work, an attempt has been made to examine the different welding parameters which affect the weldability of 304H Austenitic stainless steel (ASS) welded joint using the proper filler wire. Chemical composition of filler wire was same as that of base metal. Further this study addressed the combined effect of various welding parameters on the metallurgical and mechanical properties of the weldments. Welding was carried out at different parameters such as welding wire speed, shielding gas flow rate, welding current and arc voltage etc. Tensile tests and V-notch Charpy tests were conducted as per ASTM to determine the mechanical properties of the welded specimens. In order to determine the microstructured changes that occurred, the interface regions of the welded specimens were examined by microscope. As a result, it is reported that changing the shielding gas flow rate and wire feed speed affects the microstructure and mechanical properties of weldment. Impact tests reveal that toughness of the welded joint increases with increasing in welding current, while ultimate tensile strength (UTS) first increases and then decreases.
不同焊接参数对304H不锈钢焊接接头力学和显微组织性能的影响
在本研究中,研究了不同焊接参数对304H奥氏体不锈钢(ASS)焊接接头可焊性的影响。填充丝的化学成分与母材相同。进一步研究了不同焊接参数对焊接件的冶金性能和力学性能的综合影响。在不同的焊丝速度、保护气体流量、焊接电流和电弧电压等参数下进行焊接。根据ASTM进行拉伸试验和v形缺口夏比试验,以确定焊接试样的力学性能。为了确定焊接试样的微观组织变化,对焊接试样的界面区域进行了显微镜观察。结果表明,改变保护气体流量和送丝速度会影响焊件的组织和力学性能。冲击试验结果表明,焊接接头的韧性随焊接电流的增大而增大,而极限抗拉强度先增大后减小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
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