王德仁
姓名:王德仁
所在系所:腐蚀控制系统工程研究所
职称:副教授
通信地址:北京市海淀区学院路30号北京科技大学新材料技术研究院
邮编:100083
办公地点:腐蚀楼301
办公电话:010-62333524
邮箱:dr_wang@ustb.edu.cn
个人简介
研究方向
科研业绩
部分代表性论文:
[1] Menghao Li, Deren Wang⁎, Jianchao Xue, Ruixia Jia, Preparation of Pd-doped Y3Al5O12 thermal barrier coatings using cathode plasma electrolytic deposition, Ceramics International 46 (2020) 7019–7024.
[2] Menghao Li, Deren Wang⁎, Jianchao Xue, Ruixia Jia, Direct preparation of Y3Al5O12 hollow microspheres using cathode plasma electrolytic deposition, Ceramics International 45 (2019) 24919–24922.
[3] Jianchao Xue, Deren Wang∗, Menghao Li, Ruixia Jia, Preparation of silicon-modified gamma alumina coating through cathodic plasma electrolytic deposition, Ceramics International 45 (2019) 19345–19350.
[4] Xu Huang, Deren Wang, Leyong Hu, Juanjuan Song, Yiqing Chen, Pyrolyzing preceramic polymer into ceramic reverses the wettability of the extreme wetting surface and enhances mechanical abrasion resistance, Ceramics International, 45 (2019) 2053–2059.
[5] Xu Huang, Deren Wang*, Leyong Hu, Juanjuan Song, Yiqing Chen, Preparation of a novel antibacterial coating precursor and its antibacterial mechanism, Applied Surface Science, 2019, 465: 478-485.
[6] J Song, D Wang*, L Hu, X Huang, Y Chen, Superhydrophobic surface fabricated by nanosecond laser and perhydropolysilazane, Applied Surface Science, 2018, 455: 771-779.
[7] Leyong Hu, Ling Zhang, Deren Wang*, Xuechun Lin, Yiqing Chen, Fabrication of biomimetic superhydrophobic surface based on nanosecond laser-treated titanium alloy surface and organic polysilazane composite coating, Colloids and Surfaces A 555 (2018) 515–524.
[8] Linxiu Wang, Deren Wang*, Study on energy consumption of Al2O3 coating prepared by cathode plasma electrolytic deposition, Ceramics International, 2018, 44(1): 657-662.
[9] 王林秀, 王德仁, 李文超,预处理对阴极等离子电解沉积制备Al2O3涂层性能的影响,中国表面工程, 2017, 30(6): 1-9.
[10] Quanqiang An, Yedong He, Deren Wang*, Investigation of Ni–P/−SiC coatings on aluminum alloy via aqueous cathodic plasma electrolysis, Surface & Coatings Technology 282 (2015) 115–120
[11] Xueliang Dong, Deren Wang*, Yangqing Zeng, Effect of mechanical attrition on microstructure and properties of electro- deposition coatings on NdFeB, JOURNAL OF RARE EARTHS, Vol. 32, No. 9, Sep. 2014, P 867-873
[12] Peng Zhang, Deren Wang*, Yedong He, Preparation and properties of cathodic plasma electrolysis Ni-P coatings, Advanced Materials Research Vols. 634-638 (2013) pp 2984-2988
[13] Wang, Deren, Alumina and zirconia laminar coating prepared by complex electrolytic deposition method, Advanced Materials Research, v 538-541, p 391-396, 2012, Materials Processing Technology II
[14] 王德仁,陈亮,何业东,不锈钢表面振动冲击加速渗铝工艺研究,材料热处理学报,第33 卷第2期:132-136,2012年2月
[15] Zhang, Peng; Wang, Deren*; He, Yedong, Preparation and properties of cathodic plasma electrolysis Ni-P coatings, Advanced Materials Research, v 634-638, n 1, p 2984-2988, 2013, Advances in Chemical, Material and Metallurgical Engineering
[16] Yao, Junqi; He, Yedong; Wang, Deren; Lin, Junpin, High-temperature oxidation resistance of (Al2O3-Y2O3)/(Y2O3-stabilized ZrO2) laminated coating on 8Nb-TiAl alloy prepared by a novel spray pyrolysis, Corrosion Science, v 80, p 19-27, March 2014
[17] Yao, Junqi; He, Yedong; Wang, Deren; Peng, Hui; Guo, Hongbo; Gong, Shengkai, Thermal barrier coating bonded by (Al2O3-Y2O3)/(Y2O3-stabilized ZrO2) laminated composite coating prepared by two-step cyclic spray pyrolysis, Corrosion Science, v 80, p 37-45, March 2014
[18] Yao, Junqi; Lv, Lili; He, Yedong; Wang, Deren, Size effect of (Al2O3-Y2O3)/YSZ micro-laminated coating on high-temperature oxidation resistance, Applied Surface Science, v 279, p 85-91, August 15, 2013
[19] Yao, Junqi; He, Yedong; Wang, Deren; Peng, Hui; Guo, Hongbo; Gong, Shengkai, Thermal barrier coatings with (Al2O3-Y 2O3)/(Pt or Pt-Au) composite bond coat and 8YSZ top coat on Ni-based superalloy, Applied Surface Science, v 286, p 298-305, December 1, 2013
[20] Yao, Junqi; He, Yedong; Wang, Deren, Influence of Al2O3/YSZ micro-laminated coatings on high temperature oxidation and spallation resistance of MCrAlY alloys, Journal of Physics: Conference Series, v 419, n 1, 2013, 12th International Symposium on Multiscale, Multifunctional and Functionally Graded Materials, FGM 2012
[21] Zhu, Yuping; He, Yedong; Wang, Deren, Fe-30Ni-5NiO alloy as inert anode for low-temperature aluminum electrolysis, JOM, v 63, n 5, p 45-49, May 2011
[22] Ma, Xiaoxu; He, Yedong; Wang, Deren; Zhang, Jin, Enhanced high-temperature corrosion resistance of (Al2O3-Y2O3)/Pt micro-laminated coatings on 316L stainless steel alloy, Corrosion Science, v 54, n 1, p 183-192, January 2012
[23] Ma, Xiaoxu; He, Yedong; Lin, Junpin; Wang, Deren; Zhang, Jin, Effect of a magnetron sputtered (Al2O3-Y2O3)/(Pt-Au) laminated coating on hot corrosion resistance of 8Nb-TiAl alloy, Surface and Coatings Technology, v 206, n 10, p 2690-2697, 25 January 2012
授权国家发明专利:
[1] 王德仁,冯彪,孟琳,张祺,一种应用于锌溴液流电池的修饰电极及其制备方法,2016.09.12,中国,ZL201610817400.0
[2] 何业东,马晓旭,张津,邓舜杰,王德仁,李洪,一种弥散贵金属微粒增韧复合热障涂层及制备方法,2014.01.15,中国,ZL 201210207753.0
[3] 何业东,高俊国,任超,王德仁,张津,一种加压微波烧结制备陶瓷涂层的方法,2013.07.17,中国,ZL 200910084729.0
[4] 何业东,马晓旭,王德仁,张津,姚俊奇,邓舜杰,一种多用途的低导热陶瓷/贵金属层状复合热障涂层,2013.02.27,中国,ZL 201110329537.9
[5] 何业东,马晓旭,王德仁,朱宇平,用于铝电解的贵金属陶瓷复合涂层惰性阳极及其制备方法,2011.07.20,中国,ZL 201010034207.2
[6] 何业东,王德仁,张津,孔祥华,高俊国,任超,赵广宏,一种多功能的氧化铝/金属微叠层涂层,2011.06.08,中国,ZL 200910091843.6
[7] 何业东,詹肇麟,王德仁,一种加速制备合金涂层的方法,2007.05.16,中国,ZL 200410009189.7
[8] 何业东,姚明明,王德仁,一种在超重力场中制备纳米或纳米复合陶瓷涂层的方法,2006.10.25,中国,ZL 200410098906.8
[9] 何业东,王德仁,张鲲,李良坚,一种热压滤法制备纳米和纳米复合陶瓷涂层的方法,2006.10.20,中国,ZL 200510011338.8
[10] 何业东,姚明明,王德仁,王宁,一种表面微孔化提高合金或合金涂层与氧化物结合力的方法,2006.10.20,中国,ZL 200410009203.3
[11] 何业东,王德仁,王延锁,杨延平,秦学功,李德志,钢铁制品锌铝包埋共渗方法及其渗剂,2005.03.09,中国,ZL 01143255.1
[12] 何业东,杨晓战,王德仁,一种制备氧化物陶瓷涂层的阴极微弧电沉积方法,2004.02.11,中国,ZL 01118541.4