在Acta Mater, J Mater Sci Technol, Scr Mater, Corros Sci等国际权威学术期刊上发表SCI论文40余篇,其中以第一/通讯作者发表SCI论文18篇;获授权中国发明专利6件,美国发明专利1件,入选山东省青年科技人才托举工程、伟德BETVLCTOR1946齐鲁青年学者计划。 论文发表详见:https://www.researchgate.net/profile/Jianwei-Tang/research [1] L. Zhang, J. Tang*, G. Dang, et al., Synergistic effects of reinforcement and matrix powder sizes on microstructure and mechanical properties of spark plasma sintered TiB/Ti-6Al-4V composites, Journal of Alloys and Compounds 1041 (2025) 183835. [2] J. Tang*, Y. Wang*, H. Fujihara, et al., Exceptional stress corrosion cracking resistance-strength synergy of Al-Zn-Mg-Cu alloys via tailored nano-sized particles, Materials Research Letters 13(5) (2025) 567-576. [3] J. Tang*, Y. Wang, H. Fujihara, et al., Stress corrosion cracking induced by the combination of external and internal hydrogen in Al-Zn-Mg-Cu alloy, Scripta Materialia 239 (2024) 115804. [4] J. Tang, L. Chen*, G. Zhao, et al., Experimental study on tensile deformation behaviors under room and elevated temperatures induced by microstructure inhomogeneity of ZK60 Mg with a longitudinal weld, Journal of Magnesium and Alloys 11 (2023) 4338-56. [5] J. Tang, L. Chen*, Z. Li, et al., Suppressing abnormal grain growth and switching precipitation behaviors in ZK60 Mg profile by inducing pre-tension, Journal of Materials Science & Technology 155 (2023) 89-101. [6] J. Tang, L. Chen*, Z. Li, et al., Evolution mechanisms of charge weld during porthole die extrusion of ZK60 Mg profile, Journal of Materials Processing Technology 300 (2022) 117401. [7] J. Tang, L. Chen*, Z. Li, et al., Formation of abnormal coarse grains and its effects on corrosion behaviors of solution treated ZK60 Mg alloy, Corrosion Science 180 (2021) 109201. [8] J. Tang, L. Chen*, Z. Li, et al., Microstructure characterization and corrosion behavior of hollow ZK60 Mg profile containing longitudinal welds, Corrosion Science 193 (2021) 109875. [9] J. Tang, L. Chen*, G. Zhao, et al., Achieving three-layered Al/Mg/Al sheet via combining porthole die co-extrusion and hot forging, Journal of Magnesium and Alloys 8 (2020) 654-666. [10] J. Tang, L. Chen*, G. Zhao, et al., Formation mechanism and evolution of surface coarse grains on a ZK60 Mg profile extruded by a porthole die, Journal of Materials Science & Technology 47 (2020) 88-102. 代表性发明专利: [1] Processing technology for inhibiting weld coarse grains of magnesium alloy profiles, 美国发明,US 11697868B2 [2] 一种用于抑制镁合金型材焊缝粗晶的加工工艺,发明,ZL202111197877.1 [3] 一种碳纳米管增强多层铝基复合材料及其制备方法和应用,发明,ZL2019110614823.6 [4] 一种双金属管分流模挤压成形装置,发明,ZL201811636317.9 [5] 一种A1/Mg/Al复合板材分流模挤压成形装置及方法,发明,ZL201710906774.4 获奖情况: [1] 中国老员工机械工程创新创意大赛三等奖,2025年,指导教师 [2] 中国青年材料热处理创新创业大赛二等奖,2025年 [3] 日本金属学会优秀论文奖,2025年 [4] 中国有色金属学会优秀博士学位论文,2023年 [5] 山东省优秀博士学位论文,2023年 [6] 镁合金顶刊Journal of Magnesium and Alloys综合贡献奖,2022年 |