唐延川,博士,教授(内聘),硕士生导师,现主要从事先进金属结构材料开发、结构功能一体化金属基复合材料构型设计及性能调控、轨道交通装备材料激光成形技术等研究。入选江西省青年“井冈学者”奖励计划,BEAT365英国官网网站“天佑人才计划”及江苏省“双创计划”科技副总。担任国家自然科学基金、江西省科技项目通讯评审专家,江西省机械工程学会锻压分会副理事长、江西省机械工程学会增材制造分会副秘书长、江西省机械工程学会表面工程分会理事。近年来,主持了国家自然科学基金项目3项,江西省自然科学基金杰出青年项目等省部级项目4项,参与省部级以上项目及企业横向课题20余项;在Journal of Alloys and Compounds、Materials & Design、Corrosion science、Surface & Coating Technology、Materials Letters等权威学术期刊上发表学术论文50余篇,申请和授权国家发明专利及实用新型专利20余项,担任Journal of Alloys and Compounds、Materials & Design等国际期刊审稿专家。
[1]Tang Yanchuan, Chen Lili, Wang Wenhui, et al. Assessment of solidification cracking susceptibility and mechanisms in 316L stainless steel repaired by laser-deposited CoCrFeNi high entropy alloy, Journal of Materials Research and Technology, 2026, 42: 1318–1330. [2]Tang Yanchuan, Wang Wenhui, Wan Neng, et al. Solidification and tribological behaviors of CoCrFeNiSi0.5-(Al,Ti) non-equiatomic high entropy alloy coatings fabricated by directlaser deposition [J]. Surface & Coatings Technology, 2024, 438: 130808. [3]Tang Yanchuan, Li Xinlong, Liu Shusheng, et al. Role of geometrically necessary dislocations on the superior damping capacity and high strength-ductility of 5083Al/SUS405 laminated heterostructure composites[J]. Materials Letters, 2024, 357: 135821. [4]Tang Yanchuan, Wan Neng, Shen Mingxue, et al. A comparison of the microstructures and hardness values of non-equiatomic (FeNiCo)-(AlCrSiTi) high entropy alloys having thermal histories related to laser direct metal deposition or vacuum remelting[J]. Journal of Materials Research and Technology, 2021,15: 696-707. [5]Tang Yanchuan, Yang Haichao, Huang Daosi, et al. Dual-gradient bainite steel matrix composite fabricated by direct laser deposition[J]. Materials Letters, 2019, 238: 210-213. [6]Tang Yanchuan, Kang Yonglin, Liu Dejia, et al. Tuning Low Cycle Fatigue Properties of Cu-Be-Co-Ni Alloy by Precipitation Design[J]. Metals, 2018, 8(6): 444. [7]Tang Yanchuan, Kang Yonglin, Yue Lijuan, et al. Mechanical properties optimization of a Cu–Be–Co–Ni alloy by precipitation design[J]. Journal of Alloys and Compounds, 2017, 695: 613-625. [8]Tang Yanchuan, Zhu Guoming, Kang Yonglin, et al. Effect of microstructure on the fatigue crack growth behavior of Cu–Be–Co–Ni alloy[J]. Journal of Alloys and Compounds, 2016, 663: 784-795. [9]Tang Yanchuan, Kang Yonglin, Yue Lijua, et al. The effect of aging process on the microstructure and mechanical properties of a Cu–Be–Co–Ni alloy[J]. Materials & Design, 2015, 85: 332-341. [10]唐延川, 张锦锋, 沈明学, 等. 激光沉积贝氏体/马氏体复相超高强钢组织性能研究, 中国激光, 2024, 51(24): 55-69. [11]唐延川, 万能, 唐兴昌, 等. 合金化组元(Al, Cr, Si, Ti)含量对激光沉积(FeNiCo)-(AlCrSiTi)非等原子比多组元合金涂层组织与力学性能的影响[J]. 材料工程, 2021, 49(07): 92-102. [12]唐延川, 王友星, 刘德佳, 等. 激光沉积 CoCrFeNiSi-(Al,Ti)非等原子比高熵合金涂层腐蚀行为研究[J]. 表面技术, 2023, 52(09): 377-387+396. (封面论文)