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赵悦

姓名 赵悦
性别 发明专利4999代写全部资料
学校 江苏科技大学
部门 赵悦,副教授,材料科学与工程学院
学位 赵悦,副教授,材料科学与工程学院
学历 焊接楼310
职称 赵悦,副教授,材料科学与工程学院
联系方式 实用新型1875包写包过
邮箱 zhaoyue90214@just.edu.cn
   
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赵悦 副教授 材料科学与工程学院 个人邮箱: zhaoyue90214@just.edu.cn 办公地点: 焊接楼310 通讯地址: 江苏省镇江市京口区梦溪路2号 邮政编码: 212000 传真: 您是第944 位访问者 个人简介 教育背景2020.9 — 今江苏科技大学材料科学与工程学院任教2020.9 — 2020.9江苏科技大学材料科学与工程(师资博后)2015.9 — 2020.9上海交通大学材料科学与工程(博士研究生)2012.9 — 2015.6江苏科技大学材料加工工程(硕士研究生)2008.9 — 2012.6南京工程学院材料成型及控制工程(本科)主要从事先进材料激光定向能量沉积涂层、激光增材制造、激光焊接等领域的科研工作。主持江苏省自然科学基金项目1项,国家自然科学基金青年基金项目1项。目前,以第一作者发表相关科技论文10余篇,其中被SCI检索论文6篇。第一作者申请国家发明专利2项,授权1项。代表作[1] Yue Zhao, Kai Feng, Chen Shen, Zhuguo Li,A novel method to increase the content of h-BN and the deposition efficiency of laser cladding Ni60/nano-Cu/h-BN coating by adding MoO3,Materials Letters,Volume 257, 15 December 2019, 126614.[2] Yue Zhao, Kai Feng, Chengwu Yao, Pulin Nie, Jian Huang, Zhuguo Li. Microstructure and tribological properties of laser cladded self-lubricating nickel-base composite coatings containing nano-Cu and h-BN solid lubricants, Surface and Coatings Technology, Volume 359, 15 February 2019, Pages 485-494 [3] Yue Zhao, Kai Feng, Chengwu Yao, Zhuguo Li, Effect of MoO3 on the microstructure and tribological properties of laser-clad Ni60/nanoCu/h-BN/MoO3 composite coatings over wide temperature range, Surface and Coatings Technology, Volume 387, 15 April 2020, 125477.[4] Yue Zhao, Ruifeng Li*, Mingfang Wu, Hangyu Yue, Taotao Li, Yuan Chen, Effect of c-BN on the microstructure and high temperature wear resistance of laser cladded Ni-based composite coating, Surface and Coatings Technology, 15 September 2021, 421: 127466[5] Yue Zhao, Mingfang Wu, Jancheng Hou, Yuan Chen, Chao Zhang, Jiangbo Cheng, Ruifeng Li*, Microstructure and high temperature properties of laser cladded WTaNbMo refractory high entropy alloy coating assisted with ultrasound vibration, Journal of Alloys and Compounds, 5 November 2022, 920: 165888.[6] Yue Zhao, Mingfang Wu, Pengcheng Jiang, Ruifeng Li*, Jiangbo Cheng, Yuan Chen,Microstructure of WTaNbMo refractory high entropy alloy coating fabricated by dynamic magnetic field assisted laser cladding process, journal of materials research and technology, 2022, 20: 1908-1911. 研究方向 激光熔覆,激光3D打印,材料表面修复、再制造等 教育经历 2020.9 — 今江苏科技大学材料科学与工程学院任教2020.9 — 2020.9江苏科技大学材料科学与工程(师资博后)2015.9 — 2020.9上海交通大学材料科学与工程(博士研究生)2012.9 — 2015.6江苏科技大学材料加工工程(硕士研究生)2008.9 — 2012.6南京工程学院材料成型及控制工程(本科 课程教学 高能束焊(四年级选修)专业英语(四年级选修)材料焊接性(三年级必修) 科研项目 1 动态磁场辅助激光表面合金化难熔高熵合金形性调控机理 2 电磁场辅助激光熔覆WTaNbMo/c-BN难熔高熵合金复合涂层 科研团队 江苏科技大学材料学院李瑞峰书记团队,团队成员张晓强、乔磊等。 获奖动态 教学随笔 论文著作 [1] Yue Zhao, Kai Feng, Chen Shen, Zhuguo Li,A novel method to increase the content of h-BN and the deposition efficiency of laser cladding Ni60/nano-Cu/h-BN coating by adding MoO3,Materials Letters,Volume 257, 15 December 2019, 126614.  [2] Yue Zhao, Kai Feng, Chengwu Yao, Pulin Nie, Jian Huang, Zhuguo Li. Microstructure and tribological properties of laser cladded self-lubricating nickel-base composite coatings containing nano-Cu and h-BN solid lubricants, Surface and Coatings Technology, Volume 359, 15 February 2019, Pages 485-494 [3] Yue Zhao, Kai Feng, Chengwu Yao, Zhuguo Li, Effect of MoO3 on the microstructure and tribological properties of laser-clad Ni60/nanoCu/h-BN/MoO3 composite coatings over wide temperature range, Surface and Coatings Technology, Volume 387, 15 April 2020, 125477. [4] Yue Zhao, Ruifeng Li*, Mingfang Wu, Hangyu Yue, Taotao Li, Yuan Chen, Effect of c-BN on the microstructure and high temperature wear resistance of laser cladded Ni-based composite coating, Surface and Coatings Technology, 15 September 2021, 421: 127466 [5] Yue Zhao, Mingfang Wu, Jancheng Hou, Yuan Chen, Chao Zhang, Jiangbo Cheng, Ruifeng Li*, Microstructure and high temperature properties of laser cladded WTaNbMo refractory high entropy alloy coating assisted with ultrasound vibration, Journal of Alloys and Compounds, 5 November 2022, 920: 165888[6] Yue Zhao, Mingfang Wu, Pengcheng Jiang, Ruifeng Li*, Jiangbo Cheng, Yuan Chen,Microstructure of WTaNbMo refractory high entropy alloy coating fabricated by dynamic magnetic field assisted laser cladding process, journal of materials research and technology, 2022, 20: 1908-1911.

赵悦