Characterization of Dissimilar Welding between 304 Stainless Steel and Gray Iron Using Nickel Coated Electrode

J. García-Lira, E. Curiel-Reyna, Yajaira-Ilse Curiel-Razo, A. Lara-Guevara, I. Rojas-Rodríguez
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引用次数: 2

Abstract

This paper presents the study carried out to study the microstructure and mechanical properties of AISI 304 stainless steel and gray iron, in order to recognize the effect of welding parameters on the joint. The shielded metal arc welding technique was applied with a 3.2 mm diameter nickel coated electrode under preheating and post heat conditions at 350 ̊C. Vickers hardness test and metallographic analysis were carried out at the heat affected zone and at the interface to determine the effect on mechanical and metallurgical characteristics. Vickers hardness differences among joint areas were directly related to microstructural changes. There are no significant differences in AISI 304 hardness, but the hardness increased at the heat affected zone and decreased at the filler metal. Grey iron hardness at the heat affected zone was even lower and more slightly superior than grey iron hardness.
镀镍电极对304不锈钢与灰铸铁异种焊接的表征
为了了解焊接参数对接头的影响,对AISI 304不锈钢和灰铸铁的显微组织和力学性能进行了研究。采用直径3.2 mm的镀镍电极,在350℃的预热和后热条件下进行金属保护电弧焊。在热影响区和界面处进行了维氏硬度测试和金相分析,以确定对力学和冶金特性的影响。不同接头区域的维氏硬度差异与显微组织变化有直接关系。AISI 304的硬度无显著差异,但在热影响区硬度升高,在填充金属处硬度降低。热影响区灰口铁的硬度比灰口铁的硬度更低,略高于灰口铁。
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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