Microstructure and mechanical properties of resistance upset butt welded 304 austenitic stainless steel joints

被引:37
作者
Sharifitabar, M. [2 ]
Halvaee, A. [1 ]
Khorshahian, S. [2 ]
机构
[1] Univ Tehran, Sch Met & Mat Engn, Univ Coll Engn, Tehran, Iran
[2] Univ Sistan & Baluchestan, Met & Mat Engn Div, Zahedan, Iran
关键词
Ferrous metals and alloys; Welding; Mechanical; Microstructure; FATIGUE BEHAVIOR;
D O I
10.1016/j.matdes.2011.03.007
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Resistance upset welding (UW) is a widely used process for joining metal parts. In this process, current, time and upset pressure are three parameters that affect the quality of welded products. In the present research, resistance upset butt welding of 304 austenitic stainless steel and effect of welding power and upset pressure on microstructure, tensile strength and fatigue life of the joint were investigated. Microstructure of welds were studied using scanning electron microscopy (SEM). X-ray diffraction (XRD) analysis was used to distinguish the phase(s) that formed at the joint interface and in heat affected zone (HAZ). Energy dispersive spectroscopy (EDS) linked to the SEM was used to determine chemical composition of phases formed at the joint interface. Fatigue tests were performed using a pull-push fatigue test machine and the fatigue properties were analyzed drawing stress-number of cycles to failure (S-N) curves. Also tensile strength tests were performed. Finally tensile and fatigue fracture surfaces were studied by SEM. Results showed that there were three different microstructural zones at different distances from the joint interface and delta ferrite phase has formed in these regions. There was no precipitation of chromium carbide at the joint interface and in the HAZ. Tensile and fatigue strengths of the joint decreased with welding power. Increasing of upset pressure has also considerable influence on tensile strength of the joint. Fractography of fractured samples showed that formation of hot spots at high welding powers is the most important factor in decreasing tensile and fatigue strengths. (C) 2011 Elsevier Ltd. All rights reserved.
引用
收藏
页码:3854 / 3864
页数:11
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