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魏艳妮

【来源: | 发布日期:2026-01-12 】

基本情况

姓名:魏艳妮

出生年月:1984年2月

职称:教授博导/硕导

联系方式:13488472671(同微信)

邮箱:weiyanni@xaut.edu.cn

学习与工作经历

2004.09~2015.06 西北工业大学材料学院材料加工工程,本科/硕士/博士

2015.06~2025.12西安理工大学材料科学与工程学院,讲师/副教授

2026.01~至今 西安理工大学材料科学与工程学院,教授

研究方向

[1] 异种材料连接,包括铝/铜、铝/钢、铝/镁、石墨/钼合金等

[2] 异质界面组织与性能调控

[3]真空扩散连接工艺与机理研究

荣誉称号

[1] 西安理工大学优秀青年教师

[2]西安理工大学校科研先进个人

获奖情况

[1] 陕西省科学技术进步二等奖,4/10

[2] 陕西高等学校科学技术研究优秀成果一等奖,4/10


科研情况

[1] 国家自然科学基金面上项目(52574450),2026.01-2029.12,主持

[2] 国家自然科学基金青年项目(51701154),2018.01-2020.12,主持

[3] 陕西省重点研发计划重点项目(2017ZDXM-GY-033),2017.08-2020.07,主持

[4]陕西省自然科学基础研究计划面上项目(2023-JC-YB-311), 2023.01-2024.12,主持

[5] 西安市科技计划项目(24GXFW0068),2024.01-2025.12,主持

[6] 中国博士后基金面上项目(2016M592823), 2016.06-2018.01,主持

[7] 陕西省教育厅专项科研计划项目(17JK0563),2017.06-2018.12,主持

[8] 凝固技术国家重点实验室开放课题(SKLSP201642),2016.06-2017.05,主持

教育教学

[1] 新工科背景下智能焊接专业人才交叉融合并培养模式,教改项目(xjy2415), 2024.09-2026.09, 主持

[2] 《焊接工程基础》课程项目驱动型教学体系重构研究, 教育部产学研协同育人项目,2024.09-2025.07, 主持

[3]《焊接结构制造》项目驱动教学体系重构研究,教改项目(xjy2014), 2020.09-2022.09, 主持

[4] 西安理工大学“课程思政”校级精品示范课程,负责人

[5]《焊接结构制造》项目驱动教学体系重构研究,教改论文,电焊机,2022,52:114-118

授权发明专利

[1] 魏艳妮, 朱灵浩, 贾磊, 陈宇, 刘东杰, 李亚茹. 不锈钢刻蚀液及不锈钢表面微结构刻蚀方法, 发明专利号: 2023110938277.

[2] 魏艳妮, 陈宇, 郭冰冰, 朱灵浩, 贾磊. TiC颗粒增强高强度高耐磨钨基复合材料及制备方法, 发明专利号:202211513870.X

[3] 魏艳妮, 朱灵浩, 贾磊, 陈宇, 郭冰冰. TiC颗粒增强高强度TZM基复合材料及制备方法, 发明专利号:202211572527.2

[4] 魏艳妮, 牛瑞, 郭瀚林, 陈宇, 邹军涛. 一种波形界面提高铜石墨接头强度的方法, 发明专利号: 202110857763.8.

[5] 魏艳妮, 罗永光, 曲洪涛, 梁淑华, 邹军涛, 谭世友. 一种铜铝异质复合材料过渡层电导率的测定方法. 发明专利号: 201710384682.4.

[6]魏艳妮, 孙福, 梁淑华, 肖鹏, 邹军涛, 李辉. 一种复合强化铝合金的制备方法, 发明专利号: 201811511254.4.

发表论文代表作

[1] Yanni Wei, Quanning Li, Shuyuan Zhang, Yifan Hu, Mengfan Ma, Yipeng Wang. First-principles study on the interfacial bonding and interfacial thermal conductance of carbide-reinforced graphite/Cu. Surfaces and Interfaces 80 (2026) 108212.

[2]Yanni Wei, Shuyuan Zhang, Quanning Li, Yifan Hu, Mengfan Ma, Yipeng Wang. Study on the microstructure evolution and the interfacial void closure mechanism of the stainless steel diffusion bonding joints. Journal of Alloys and Compounds 1041 (2025) 183780.

[3]Yanni Wei, Mengfan Ma, Shuyuan Zhang, Yifan Hu, Quanning Li, Linghao Zhu.Investigation of the microstructure and properties of a ZrC-reinforced TZMmolybdenum alloy.International Journal of RefractoryMetals and Hard Materials, 2025, 131, 107188.

[4] Yanni Wei, Quanning Li, Yifan Hu, Bingbing Guo, Linghao Zhu. Effect of carbide transition layer on enhancing heat transport across graphite/cu heterogeneous interface. Diamond & Related Materials, 2025, 152: 111918.

[5]Yanni Wei, Yifan Hu, Shuyuan Zhang, Quanning Li, Mengfan Ma, Yipeng Wang. Study of the Corrosion Behavior of 304 Stainless Steel inHCl‐Based Etching Systems. Materials and Corrosion, 2025: 1–14.

[6]YanniWei, YaruLi, ShuyuanZhang, QuanningLi, YifanHu, MengfanMa,YipengWang.Study ontheprocess andmechanism ofvoidclosure atdiffusion bonding interface of6061aluminum alloy.Journal of Materials Science 2025.

[7]Yanni Wei, Shuyuan Zhang, Yu Chen, et al. Microstructure and mechanical properties of tungsten matrix composites synergistically reinforced with TiC-ZrC particles prepared by spark plasma sintering.International journal of refractory metals & hard materials, 2024, 123: 106786.

[8]Yanni Wei, Linghao Zhu, Lei Jia, et al. Study on the Influence of Etchant Composition and Etching Process on the Precision of Stainless-Steel Microchannel and Etching Mechanism. Advanced Engineering Materials, 2024: 2301731.

[9]Yanni Wei, Yaru Li, Yu Chen, Linghao Zhu, and Bingbing Guo. The Microstructure and Mechanical Properties of Carbon Nanotube-Reinforced W-Matrix Composites[J]. Journal of Materials Engineering and Performance, 2024.

[10]Yanni Wei, Yu Chen, Bingbing Guo, et al. The microstructure and mechanical properties of TiC-reinforced W-matrix composites prepared by spark plasma sintering[J]. international journal of refractory metals & hard materials, 2023, 112: 106158.

[11]Yanni Wei, Yu Chen, Mengfan Ma, Linghao Zhu, Yaru Li, Bingbing Guo. Investigation on microstructure and reinforcement mechanism of the TiC-reinforced W-matrix composite prepared by high-energy ball milling and spark plasma sintering[J]. Vacuum, 2024, 220: 112841

[12]Yanni Wei, Yu Chen, Shuhua Liang, et al. Microstructure and mechanical properties of TiC reinforced TZM composites prepared by spark plasma sintering. International journal of refractory metals & hard materials, 2023, 116: 106345.

[13]Yanni Wei, Yu Chen, Bingbing Guo, Linghao Zhu. The influence of interface structure on the microstructure and properties of Cu/graphite joint prepared by vacuum diffusion bonding. Vacuum, 2023, 209, 111771

[14]Yanni Wei, Linghao Zhu, Yaru Li, Yu Chen, Bingbing Guo. Formation mechanism and microstructure evolution of Cu/Ti diffusion bonding interface and its influence on joint properties. Vacuum, 2023, 213, 112167.

[15]Yanni Wei, Yaru Li, Linghao Zhu, Yu Chen, Bingbing Guo. Study on inhibition of interfacial compounds and improvement of joint properties by low temperature and high-pressure process in diffusion bonding of Ti/Cu. Vacuum, 2023, 218, 112636.

[16]Yanni Wei, Rui Niu, Hanlin Guo, Yongguang Luo, Juntao Zou. Microstructure and performance of graphite/copper joints by brazing with different interfacial structures. Advanced Engineering Materials, 2022, 24, 2101161.

[17]Yanni Wei, Yu Chen, Rui Niu, Qing Yang, Yongguang Luo, Juntao Zou. Study on the thermal conductivity of Cu/Al joints with different interfacial microstructure. Advances in Materials Science and Engineering, 2022, 7040685.

[18]Yanni Wei, Hui Li, Peng Xiao, Juntao Zou. Microstructure and performance of graphite/TZM alloy joints with different interfacial structures formed by vacuum diffusion bonding. International journal of refractory metals & hard materials, 2020, 92, 105287.

[19]Yanni Wei, Fu Sun, Hui Li, Xiao Peng, Juntao Zou. The Microstructure and Mechanical Properties of Multi-pass Friction Stir-Welded Al/Cu Lap Joints and Interface Transfer during Butt Joining of Thick Plates. Advanced Engineering Materials, 2020, 22, 2000346.

[20]Yanni Wei, Hui Li, Xiao Peng, Juntao Zou. Microstructure and Conductivity of the Al-Cu Joint Processed by Friction Stir Welding. Advances in Materials Science and Engineering 2020, 6845468.

[21]Yanni Wei, Fu Sun, Huaibao Gao, Xiao Peng, Juntao Zou. Aluminium composites prepared by laser cladding assisted by friction stir processing. Materials Research Express, 2020, 7(11): 116521.

[22]Yanni Wei, Hui Li, Fu Sun and Juntao Zou. The Interfacial Characterization and Performance of Cu/Al-Conductive Heads Processed by Explosion Welding, Cold Pressure Welding, and Solid-Liquid Casting. Metals, 2019, 9(2), 237.

[23]Yanni Wei, Fu Sun, Shiyou Tan, Shuhua Liang. Study on microstructure and performance of transient liquid phase bonding of Cu/Al with Al-based interlayers. Vacuum, 2018, 154: 18–24.

[24]Yanni Wei, Fu Sun. Microstructures and Mechanical Properties of Al/Fe and Cu/Fe Joints by Continuous Drive Friction Welding. Advances in Materials Science and Engineering, 2018, 2809356.

[25]Yanni Wei, Yongguang Luo, Hongtao Qu, Juntao Zou, Shuhua Liang. Microstructure evolution and failure analysis of an aluminum-copper cathode conductive head produced by explosive welding. Journal of Materials Engineering and Performance, 2017, 26: 1–9.

[26]Yanni Wei, Jiangtao Xiong, Jinglong Li, Fusheng Zhang, Shuhua Liang. Microstructure and enhanced atomic diffusion of friction stir welding aluminum/steel joints. Materials Science and Technology, 2017, 33: 1208–1214.