Effect of variants of gas metal arc welding process on tensile properties of AA6061-T6 aluminium alloy joints

被引:0
作者
Addanki Ramaswamy
S. Malarvizhi
V. Balasubramanian
机构
[1] Annamalai University,Centre for Materials Joining & Research (CEMAJOR), Department of Manufacturing Engineering
来源
The International Journal of Advanced Manufacturing Technology | 2020年 / 108卷
关键词
Aluminium alloy; Gas metal arc welding; Pulsed current welding; Cold metal transfer; Microstructure; Microhardness;
D O I
暂无
中图分类号
学科分类号
摘要
This article describes the influence of gas metal arc welding (GMAW) variants on tensile properties of welded thin sheets of AA6061-T6 aluminium alloy. Single V butt joints were fabricated using the four variants of the GMAW process (constant current, pulsed current, cold metal transfer and pulsed cold metal transfer) under optimized conditions. Transverse tensile properties of the welded joints were evaluated, and a microhardness survey was done along the cross section of the joints. Higher hardness is recorded in the weld metal, i.e., 79 Hv for the pulsed cold metal transfer (PCMT) joint which is 14% higher than the continuous current GMAW joints. It is observed that a PCMT-welded joint exhibited the highest tensile strength of 227 MPa which is 16% higher than the continuous current GMAW joints. The fracture surface of the tensile specimens is highly dominated by the dimples with tearing ridges which suggests that the joints have experienced sufficient plastic deformation before failure irrespective of the welding process. The results demonstrated that the joints fabricated using the PCMT process exhibited superior tensile properties with controlled segregation of phases compared to the other variants of the GMAW process due to the pulsing effect associated with the retraction of the wire.
引用
收藏
页码:2967 / 2983
页数:16
相关论文
共 133 条
[1]  
Zhang HT(2008)Interfacial phenomena of cold metal transfer (CMT) welding of zinc coated steel and wrought aluminium Mater Sci Technol 24 1346-1349
[2]  
Feng JC(2009)Welding of thin sheet of Al alloy (6082) by using Vario wire DC P-GMAW Int J Adv Manuf Technol 42 102-117
[3]  
He P(2015)Low energy versus pulse in MIG welding of “thin” sheets of aluminium alloy EN AW 6082 Solid State Phenom 229 35-44
[4]  
Kumar R(2007)Influences of pulsed current tungsten inert gas welding parameters on the tensile properties of AA 6061 aluminium alloy Mater Des 28 2080-2092
[5]  
Dilthey U(2007)Effect of pulsed current TIG welding parameters on pitting corrosion behaviour of AA6061 aluminium alloy J Mater Sci Technol 23 223-229
[6]  
Dwivedi DK(2006)Evaluation of cold metal transfer (CMT) process for welding aluminium alloy Sci Technol Weld Join 11 583-585
[7]  
Adamiec J(2005)Effect of current waveforms on metal transfer in pulsed gas metal arc welding Meas Sci Technol 16 2459-2465
[8]  
Rykała J(2005)Influence of GMAW-P current waveforms on heat input and weld bead shape Sci Technol Weld Join 10 311-318
[9]  
Senthil Kumar T(2017)Characterization the contribution and limitation of the characteristic processing parameters in cold metal transfer deposition of an Al alloy J Mater Process Technol 245 122-133
[10]  
Balasubramanian V(2015)The effect of welding speed on microstructures of cold metal transfer deposited AZ31 magnesium alloy clad JMADE. 86 894-901