以第一作者或通訊作者發(fā)表SCI論文33篇,其中中科院1、2區(qū)論文18篇,3篇ESI高引用論文,1篇論文入選中國(guó)機(jī)械工程學(xué)會(huì)優(yōu)秀論文,個(gè)人H因子為28,被引1800余次。 [1] 第一作者. High-temperature oxidation behavior of high chromium superalloys additively manufactured by conventional or extreme high-speed laser metal deposition[J]. Corrosion Science. 2020, 176: 108922. (中科院1區(qū) Top,IF:7.4) [2] 第一作者. Microstructure and mechanical properties of high chromium nickel-based superalloy fabricated by laser metal deposition[J]. Materials Science and Engineering: A. 2020, 780: 139185. (中科院1區(qū) Top,IF:6.1) [3] 第一作者. Effect of hot isostatic pressing on microstructure and properties of high chromium K648 superalloy manufacturing by extreme high-speed laser metal deposition[J]. Journal of Materials Research and Technology. 2024, 28: 3951-3959. (中科院1區(qū),ESI高被引論文) [4] 第一作者. Microstructure and Properties of Additive Manufacturing K648 Superalloy Fabricated by Extreme High-Speed Laser Metal Deposition[J]. Transactions of Nonferrous Metals Society of China. 2024, 34(7): 2192-2203.(中科院1區(qū)) [5] 第一作者. Microstructure Evolution and Mechanical Properties of High-chromium Superalloy Manufacturing by Extreme High-Speed Laser Metal Deposition at Different Aging Temperatures[J]. Journal of Alloys and Compounds. 2023: 172202. (中科院2區(qū) Top) [6] 第一作者. A study on the additive manufacturing of a high chromium Nickel-based superalloy by extreme high-speed laser metal deposition[J]. Optics & Laser Technology. 2021, 133: 106504. (中科院2區(qū) Top) [7] 通訊作者. Microstructure and wear resistance of in-situ TiC reinforced AlCoCrFeNi-based coatings by laser cladding[J]. Applied Surface Science. 2022: 152703. (中科院1區(qū) Top,ESI高被引論文) [8] 通訊作者. Microstructure and wear resistance of AlCoCrFeNi-WC/TiC composite coating by laser cladding[J]. Materials Characterization. 2022, 194: 112479.(中科院1區(qū) Top) [9] 通訊作者. On the enhanced wear resistance of laser-clad CoCrCuFeNiTix high-entropy alloy coatings at elevated temperature[J]. Tribology International. 2022, 174: 107767. (中科院1區(qū) Top) [10] 第一作者. Microstructure and properties of WC reinforced Ni-based composite coatings with Y2O3 addition on titanium alloy by laser cladding[J]. Science and Technology of Welding and Joining. 2019, 24(5): 517-524. (中科院2區(qū)) |