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Fiber laser welding of austenitic steel and commercially pure copper butt joint
Affiliation:1. Department of Mechanical Engineering, National Institute of Technology, Rourkela 769008, Odisha, India;2. International Advanced Research Centre for Powder Metallurgy and New Materials (ARCI), Hyderabad 500005, India
Abstract:The fiber laser welding of austenitic stainless steel and commercially pure copper in butt joint configuration without filler or intermediate material is presented. In order to melt stainless steel directly and melt copper via heat conduction a defocused laser beam was used with an offset to stainless steel. During mechanical tests the weld seam was more durable than heat affected zone of copper so samples without defects could be obtained. Three process variants of offset of the laser beam were applied. The following tests were conducted: tensile test of weldment, intermediate layer microhardness, optical metallography, study of the chemical composition of the intermediate layer, fractography. Measurements of electrical resistivity coefficients of stainless steel, copper and copper–stainless steel weldment were made, which can be interpreted or recalculated as the thermal conductivity coefficient. It shows that electrical resistivity coefficient of cooper–stainless steel weldment higher than that of stainless steel. The width of intermediate layer between stainless steel and commercially pure copper was 41–53 µm, microhardness was 128–170 HV0.01.
Keywords:Fiber laser welding  Dissimilar metal joints  Mechanical properties  Microstructure  Thermal conductivity
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