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[16] AN ANALYSIS OF MICROSTRUCTURE AND MICROHARDNESS DISTRIBUTION IN UNDERWATER WET WELDING OF 304L AUSTENITIC STAINLESS STEEL TO LOW ALLOY STEEL 16MN.Proceedings of the ASME 2018 13th International Manufacturing Science and Engineering Conference
[17] Interfacial microstructure and mechanical property of brazed copper/SiO2 ceramic joint.Vacuum,141:116-123
[18] Effects of Mo, Ti and B on Microstructure and Mechanical Properties of Underwater Wet Welding Joints.Journal of Materials Engineering and Performance,26:2350-2358
[19] Microstructure and mechanical properties of underwater wet welded highcarbon-equivalent steel Q460 using austenitic consumables.Journal of Materials Processing Tech.(249):149-157
[20] Effects of processing parameters on arc stability and cutting quality in underwater wet flux-cored arc cutting at shallow water.Journal of Manufacturing Processes(33):24-34
[21] The effect of alumino-thermic addition on underwater wet welding process stability.Journal of Materials Processing Technology.2018(245):149-156
[22] Microstructural characteristics and mechanical properties of underwater wet flux-cored wire welded 316L stainless steel joints.Journal of Materials Processing Technology(238):423-430
[23] Effects of heat input on arc stability and weld quality in underwater wet flux-cored arc welding of E40 steel.J. Manuf. Process..2018,31:833-843.
[24] Microstructure and mechanical properties of dissimilar welds between 16Mn and 304L in underwater wet welding.Sci. Technol. Weld. Joi..2018,4:1-7
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