程英亮 教授 博士 湖南省 研究领域: 新材料 研究方向: 1.金属腐蚀与防护的理论和应用 2.铝、镁、锆、钛等金属的等离子体电解氧化(微弧氧化)理论及应用 3.阳极氧化 4.电沉积 所在单位: 湖南大学

基本信息

所在单位:
湖南大学
机构细分:
材料科学与工程学院
单位类型:
高等院校
职务:
教授
职称:
教授
最高学历:
博士
教育经历:
2000,9-2003,6,浙江大学,博士研究生,理学博士学位
1997,9-2000,6 四川大学,硕士研究生,工学硕士学位
1991,9-1995,6 四川大学,化学工程系,本科,学士学位
工作经历:
2003,7-今 湖南大学材料科学工程学院 副教授(2004-2014)、教授(2014,12起)
2016,8-2016,9 北海道大学(Hokkaido University)高级研究学者
2008,8-2009,8 University of Manchester(曼彻斯特大学)访问学者
1995,7-1997,9 江西省德兴铜矿,助理工程师
专家介绍:
程英亮,从2000年以来一直从事电化学基础理论和金属腐蚀与防护方面的研究。在浙江大学攻读博士学位期间,参加了我国著名腐蚀电化学家曹楚南院士领导的课题组的研究工作,作为主要研究成员先后完成了包括国家重点基础研究“973”项目“材料的环境行为与失效机理”(No. G1999065000)和国家自然科学基金“大气环境中薄液膜下铝合金腐蚀机理”(No. 50071054)在内的多项课题的研究工作。自2003年博士毕业后,进入湖南大学博士后流动站,研究了镁合金的腐蚀与防护问题,此外,在2008年8月到2009年8月间,被国家留学基金委选派到英国曼彻斯特大学腐蚀与防护中心进行了为期一年的访问研究,合作教授为P.Skeldon 教授,研究方向为锆合金的等离子电解氧化技术(Plasma electrolytic oxidation)。回国后继续从事等离子电解氧化技术的研究。 该技术又称为微弧氧化或阳极火花沉积,可在铝、镁、钛、锆等金属表面原位生成具有多种功能的陶瓷氧化膜,是近年来国内外表面工程领域研究的热点之一。近年来,我们课题组对锆合金、钛合金、铝合金、镁合金等的等离子体电解氧化取得了一系列具有特色的研究成果。 相关结果相继在国际涂层、电化学领域著名期刊Journal of the Electrochemical Society, Journal of the American Ceramic Society, Electrochimica Acta,Surface & Coatings Technology, Corrosion Science, Journal of Alloys and Compounds, Ceramic Internatioanl等发表,多名研究生获得国家奖学金。

科研能力

研究领域:
新材料
研究方向:
1.金属腐蚀与防护的理论和应用
2.铝、镁、锆、钛等金属的等离子体电解氧化(微弧氧化)理论及应用
3.阳极氧化
4.电沉积
论文著作:
2024 年

1. Panfeng Hu, Binjian Wei, Yulin Cheng, Yingliang Cheng*, Discharge channel structure revealed by plasma electrolytic oxidation of an AZ31Mg alloy with magnetron sputtering Al layer and corrosion behaviors of the treated alloy, Transactions of nonferrous metals society of China, 2024(34)139-156)

2023 年

1. Xiaorui He, Tian Feng, Yulin Cheng, Panfeng Hu, Zhengzhou Le, Zihua Liu, Yingliang Cheng*, Fast formation of a black inner α-Al2O3 layer doped with CuO on Al–Cu–Li alloy by soft sparking PEO process, Journal of the American Ceramic Society, 2023, 106: 7019-7042
2. Zihua Liu, Zhengzhou Le, Xiaorui He, Yulin Cheng, Panfeng Hu, Yingliang Cheng*, Plasma electrolytic oxidation of tantalum in an aluminate electrolyte: Effect of cathodic polarization and frequency, Ceramics International, 46(2023)13385-13396
3. Shengyang Li, Hao Chen, Qiusheng Zhang, Hongli Deng, Song Chen, Xiaohua Shen, Yizhi Yuan, Yifang Ding, Yingliang Cheng*, Hongtao Sun *, Jian Zhu*, Bingan Lu, Enhanced potassium-ion storage performance of bimetallic-sulfide based on regulatory reaction mechanism, Chemical Engineering Journal 466 (2023) 143342
4. Shengyang Li, Qiusheng Zhang, Hongli Deng, Song Chen, Xiaohua Shen, Yizhi Yuan, Yingliang Cheng*, Jian Zhu*, Bingan Lu, Confined Bismuth-Organic Framework Anode for High-Energy Potassium-Ion Batteries, Small Methods, 2023, 7
5.程昱琳, 程英亮*, 非阀金属的等离子体电解氧化进展, 表面技术, 2003, 52(6)24-40
6. Zhengzhou Le, Zihua Liu, Xiaorui He, Yulin Cheng, Panfeng Hu, Yingliang Cheng*,Influence of cathodic polarization on plasma electrolytic oxidation of Mg, AZ31 and AZ91 magnesium alloys , Coatings, 13(2023)1736

2022 年

1. Yingliang Cheng*, Tian Feng, Yulin Cheng, A systematic study of the role of cathodic polarization and new findings on the soft sparking phenomenon from plasma electrolytic oxidation of an Al-Cu-Li Alloy, Journal of the Electrochemical Society, 2022,169: 071505
2. Yulin Cheng, Tian Feng, Jiahui LÜ, Panfeng Hu, Yingliang Cheng*, Plasma electrolytic oxidation behavior and corrosion resistance of brass in aluminate electrolyte containing NaH2PO4 or Na2SiO3, Transactions of nonferrous metals society of China, 2022, 32: 3985-3997
3. Jiahui Lv, Yingliang Cheng*, Amorphous coatings on tantalum formed by plasma electrolytic oxidation in aluminate electrolyte and high temperature crystallization treatment, Surface & Coatings Technology, 2022, 434: 128171
4. Shengyang Li, Jinhui Cao, Tao Wang, Lei Wang, Hongli Deng, Qiusheng Zhang,Yingliang Cheng*, Jian Zhu*, Bingan Lu, Intercalation and covalent bonding strategies for constructing a stable cathode for high-energy density and long-cycling potassium-organic batteries, Chemical Engineering Journal, 2022, 431: 133215

2021年

1. Yulin Cheng , Binjian Wei , Yuanyuan Liu , Yingliang Cheng*, Plasma electrolytic oxidation of copper in an aluminate based electrolyte with the respective additives of Na3PO4, NaH2PO4 and NaH2PO2, Applied Surface Science 2021, 565: 150477
2. Yulin Cheng, Huanjun Xie, Jin-hui Cao, Yingliang Cheng*, Effect of NaOH on plasma electrolytic oxidation of A356 aluminium alloy in moderately concentrated aluminate electrolyte, Transactions of Nonferrous Metals Society of China, 2021, 31: 3677-3690
3. Bingjian Wei, Yulin Cheng, Yuanyuan Liu, Zhunda Zhu, Yingliang Cheng*, Corrosion and wear resistance of AZ31 Mg alloy treated by duplex process of magnetron sputtering and plasma electrolytic oxidation, Transactions of Nonferrous Metals Society of China, 2021, 31: 2287-2306
4. Yuanyuan Liu; Zhunda Zhu; Yulin Cheng; Bingjian Wei; Yingliang Cheng*; Effect of eletrodeposition temperature on the thin films of ZnO nanoparticles used for photocathodic protection of SS304, Journal of Electroanalytical Chemistry, 2021, 881:114945.
5.Shengyang Li, Hongli Deng, Zonglin Chu, Tao Wang, Lei Wang, Qiusheng Zhang, Jinhui Cao*, Yingliang Cheng*, Yangqiang Huang*, Jian Zhu*, Bingan Lu. Fast-charging nonaqueous potassium ion batteries enabled by rational construction of oxygen-rich porous nanofiber anode. ACS Applied Materials & Interfaces 2021, 13 (42), 50005-50016.

2020年

1. Yulin Cheng, Zhunda Zhu, Qinghe Zhang, XiuJuan Zhuang, Yingliang Cheng*, Plasma electrolytic oxidation of brass, Surface and Coatings Technology, 2020, 385: 125366.
2. Yuanyuan Liu, ZhundaZhu, Yingliang Cheng*, An in-depth study of photocathodic protection of SS304 steel by electrodeposited layers of ZnO nanoparticles, Surface and Coatings Technology, 2020,399:126158
3. Yingliang Cheng *, Qinghe Zhang, Zhunda Zhu, Wenbin Tu, Yulin Cheng, , Peter Skeldon, Potential and morphological transitions during bipolar plasma electrolytic oxidation of tantalum in silicate electrolyte, Ceramics International, 2020, 46(9):13385-13396.

2019 年

1. Zhunda Zhu; Wenbin Tu; Yulin Cheng; Yingliang Cheng*; The formation of metallic W and amorphous phase in the plasma electrolytic oxidation coatings on an Al alloy from tungstate-containing electrolyte, Surface and Coatings Technology, 2019, 361:176-187.
2. Shihang Kang , Wenbin Tu, Junxiang Han, Zhi Li, Yingliang Cheng *, A significant improvement of the wear resistance of Ti6Al4V alloy by a combined method of magnetron sputtering and plasma electrolytic oxidation (PEO), Surface and Coatings Technology, 2019, 358:879-890.
3. Tu W; Zhu Z; Zhuang X; Cheng Y*; Skeldon P; Effect of frequency on black coating formation on AZ31 magnesium alloy by plasma electrolytic oxidation in aluminate-tungstate electrolyte, Surface and Coatings Technology, 2019, 372:34-44.

2018 年

1. Jun-xiang Han (学), Yu-lin Cheng, Wen-bin Tu, Ting-Yan Zhan, Ying-liang Cheng*,The black and white coatings on Ti-6Al-4V alloy or pure titanium by plasma electrolytic oxidation in concentrated silicate electrolyte,Applied Surface Science 428 (2018) 684–697
2. Tingyan Zhan(学), Wenbin Tu, Yulin Cheng, Junxiang Han, Bin Su, Yingliang Cheng *,The synthesis of micro and nano WO3 powders under the sparks of plasma electrolytic oxidation of Al in a tungstate electrolyte, Ceramics International, 2018 44(9)10402-10411
发明专利:
1. 程英亮, 曹金晖, 彭昭美 ,一种锆合金表面快速制备耐磨氧化锆和氧化铝混合涂层的微弧氧化方法,中国, (中华人民共和国国家知识产权局 ), CN201310294857.4, 授权专利
2. 程英亮, 曹金晖, 彭昭美 ,一种在铝合金表面生成超耐磨涂层的两步微弧氧化法,中国, (中华人民共和国国家知识产权局 ), CN201410090494.7,授权专利
3. 曹金晖,程英亮,谢焕钧,一种在铜、铜合金、锌和锌合金表面微弧氧化法,中国, (中华人民共和国国家知识产权局 ), ZL201510647800.7,授权专利
4. 程英亮,詹婷艳,一种氧化钨粉体的制备方法,中国, (中华人民共和国国家知识产权局 ), 201710033796.4,专利申请
5. 朱春宇,程英亮,盛楠,曹金晖,一种多孔纳米碳的制备方法中国, (中华人民共和国国家知识产权局 ), 201711295195.7,专利申请
科研项目:
1. 国家自然科学基金项目:阀金属PEO膜层形成的相关理论及伴随的等离子体放电特征研究(2017,1-2020,12), 60万元,主持
2. 国家自然科学基金项目:锆合金等离子电解氧化膜的微观组织结构和性能研究(2011,1-2013,12), 30万元,主持
3. 燃料单棒锆管氧化试块的开发,(2013,4-2014,4)主持
4. 电镀过程中晶体择优生长时所表现的电化学特征研究 (2004,5-2015,11) 主持
5. 整体纳米结构Ni-SiC 复合薄膜的腐蚀行为(2007,10-2009,9)主持

项目合作

合作意向:
技术咨询
在线客服 在线留言 小程序 公众号 4001789689 <<显示