[1] Liu H H, Aoki Y, Aoki Y et al. Principle for obtaining high joint quality in dissimilar friction welding of Ti-6Al-4V alloy and SUS316L stainless steel[J]. Journal of Materials Science & Technology, 46, 211-224(2020).
[2] Ahmad H W, Chaudry U M, Tariq M R et al. Assessment of fatigue and electrochemical corrosion characteristics of dissimilar materials weld between alloy 617 and 12 Cr steel[J]. Journal of Manufacturing Processes, 53, 275-282(2020).
[3] Wang B, Shu L S. Optimization of process parameters of laser cladding 304L alloy powder based on orthogonal experiment[J]. Applied Laser, 39, 580-585(2019).
[4] Zhang X, Mi G Y, Wang C M. Microstructure and performance of hybrid laser-arc welded high-strength low alloy steel and austenitic stainless steel dissimilar joint[J]. Optics & Laser Technology, 122, 105878(2020).
[5] Yan F, Fang X, Chen L et al. Microstructure evolution and phase transition at the interface of steel/Al dissimilar alloys during Nd∶YAG laser welding[J]. Optics & Laser Technology, 108, 193-201(2018).
[6] de Luca A, Greco A, Mazza P et al. Numerical investigation on the residual stresses in welded T-joints made of dissimilar materials[J]. Procedia Structural Integrity, 24, 800-809(2019).
[7] Singh D K, Sahoo G, Basu R et al. Investigation on the microstructure: mechanical property correlation in dissimilar steel welds of stainless steel SS 304 and medium carbon steel EN 8[J]. Journal of Manufacturing Processes, 36, 281-292(2018).
[8] Pankaj P, Tiwari A, Bhadra R et al. Experimental investigation on CO2 laser butt welding of AISI 304 stainless steel and mild steel thin sheets[J]. Optics & Laser Technology, 119, 105633(2019).
[9] Antony K, Rakeshnath T R. Dissimilar laser welding of commercially pure copper and stainless steel 316L[J]. Materials Today: Proceedings, 26, 369-372(2020).
[10] Yilmaz I O, Bilici A Y, Aydin H. Microstructure and mechanical properties of dissimilar resistance spot welded DP1000-QP1180 steel sheets[J]. Journal of Central South University, 26, 25-42(2019).
[11] Zhang D, Zhao L, Liu A B et al. Understanding and controlling the influence of laser energy on penetration, porosity, and microstructure during laser welding[J]. Chinese Journal of Lasers, 48, 1502005(2021).
[12] Li J H, Zhang Y L, Du M K et al. Effect of alloy elements on the interface connection mechanism and properties of copper/steel welded joints[J]. Transactions of the China Welding Institution, 42, 34-41, 100(2021).
[13] Sun W H, Fan Y Q, Zhang G T et al. Comparison of structure and performance of laser welded joints of SiCp/Al composite materials[J]. Chinese Journal of Lasers, 48, 1002105(2021).
[14] Zhang C Z, Chen H. Effect of microstructures of ultranarrow gap laser welded B950CF steel joints on residual stress distribution[J]. Chinese Journal of Lasers, 48, 0602101(2021).
[15] Shi Y L, Wu S K, Liao H B et al. Microstructure and mechanical properties of CLF-1/316 L steel dissimilar joints welded with fiber laser welding[J]. Journal of Manufacturing Processes, 54, 318-327(2020).
[16] Gao X L, Liu J, Zhang L J. Dissimilar metal welding of Ti6Al4V and Inconel 718 through pulsed laser welding-induced eutectic reaction technology[J]. The International Journal of Advanced Manufacturing Technology, 96, 1061-1071(2018).
[17] Winarto W, Anis M, Riastuti R et al. Study the effect of welding position and plate thickness to the mechanical and microstructural properties of the TIG dissimilar metal welded between carbon steel ASTM A36 and stainless steel 304 plates[J]. Materials Science Forum, 1000, 364-372(2020).