代表性论文: | [1] Li Y, Wu S, Li H, Dong Y, Cheng F*. Submerged arc additive manufacturing (SAAM) of low-carbon steel: Effect of in-situ intrinsic heat treatment (IHT) on microstructure and mechanical properties. Additive Manufacturing. 2021;46:102124. (一作,中科院1区TOP,JCR Q1,影响因子:10.9) [2] Li Y, Wu S, J Wang, Kong W, Cheng F*. Microstructure homogeneity and strength-toughness balance in submerged arc additive manufactured Mn-Ni-Mo high-strength steel by unique intrinsic heat treatment. Journal of Materials Processing Technology. 2022, 307: 117682 (一作,中科院1区TOP,JCR Q1,影响因子:5.5) [3] Li Y, Xi Zhang*, Cheng F* Achieving balanced strength and toughness in 2.5Ni-Cr-Mo steel via submerged arc additive manufacturing by regulating intrinsic heat treatment. Materials Science and Engineering A. 2025;944:148849. (一作,中科院2区TOP,JCR Q1, 影响因子:7.0) [4] Li Y, Wu S, Lv X, Feng j, Qu H, Cheng F*. Study on the influence of interlayer temperature on microstructure and mechanical properties of submerged arc additively manufactured low-carbon steel and its in-situ toughening mechanism. Journal of Manufacturing Processes. 2021;71:356-373. (一作,中科院2区,现为1区TOP,JCR Q2, 影响因子:5.0) [5] Li Y, Wu S*, Li H, Cheng F*. Dramatic improvement of impact toughness for the fabricating of low-carbon steel components via submerged arc additive manufacturing. Materials Letters. 2021;283:128780. (一作,中科院3区,JCR Q2, 影响因子:3.4) [6] Z Liu, Li Y, Y S, Simulation and analysis of heat transfer and fluid flow characteristics of arc plasma in longitudinal magnetic field-tungsten inert gas hybrid welding. The International Journal of Advanced Manufacturing Technology.2018; (中科院3区,JCR Q3, 影响因子:2.6) |