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Comparison of mechanical properties of pure copper welded using friction stir welding and tungsten inert gas welding

机译:搅拌摩擦焊和钨极惰性气体保护焊纯铜机械性能的比较

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摘要

The objective of this research is to investigate the mechanical properties including bonding, tensile strength, and impact resistance of pure copper welded using friction stir welding (FSW) method and compare them with that of tungsten inert gas (TIG) welding. Micro-hardness tests are performed on pure copper, TIG welded copper and FSW welded copper to determine the effect of heat on the hardness of welded coppers. Tensile strength tests and notch tensile strength tests are performed to determine the mechanical properties of different weld process. In this experiment, it is found that the notch tensile strength and the notch strength ratio for FSW (212 MPa, 1.10) are significantly higher than those (190 MPa, 1.02) of TIG welding. For the impact tests, the weld zone and heat-affected zone energy absorption values for FSW (2.87 J, 2.25 J) are higher than those (1.32 J, 0J) of TIG welding. XRD tests are performed to determine components of copper before and after welding process for TIG and FSW.
机译:这项研究的目的是研究使用摩擦搅拌焊(FSW)方法焊接的纯铜的机械性能,包括粘结性,拉伸强度和耐冲击性,并将其与钨极惰性气体保护焊(TIG)进行比较。对纯铜,TIG焊接铜和FSW焊接铜进行微硬度测试,以确定热量对焊接铜硬度的影响。进行拉伸强度测试和缺口拉伸强度测试以确定不同焊接工艺的机械性能。在本实验中,发现FSW的缺口抗拉强度和缺口强度比(212 MPa,1.10)显着高于TIG焊接的缺口抗拉强度和缺口强度比(190 MPa,1.02)。对于冲击试验,FSW的焊接区和热影响区能量吸收值(2.87 J,2.25 J)高于TIG焊接的能量吸收值(1.32 J,0J)。进行XRD测试以确定TIG和FSW焊接工艺前后的铜成分。

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