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王忠维

博士,副教授,硕士生导师

电子邮箱:wangzw@cqut.edu.cn 办公地址:

[1]Zou Jingyi,Wang Zhongwei, Yanlong Ma, Yu Yan, Lijie Qiao. Role of gradient nano-structured surface in collapsed pitting corrosion on AISI 316L stainless steel during tribocorrosion.Corrosion Science, 2022, 197: 110043.

[2]Liwen Tan,Wang Zhongwei, Yanlong Ma. Tribocorrosion behavior and degradation mechanism of 316L stainless steel in typical corrosive media.Acta Metallurgica Sinica-English Letters, 2021, 34: 813-824.

[3]Liwen Tan,Wang Zhongwei, Yanlong Ma, Yu Yan, Lijie Qiao. Tribocorrosion investigation of 316L stainless steel: The synergistic effect between chloride ion and sulfate ion.Materials Research Express, 2021, 8: 086501.

[4]Zhongwei Wang, Yu Yan, Yang Wang, Yanjing Su, Lijie Qiao.Lifecycle of cobalt-based alloy for artificial joints: From bulk material to nanoparticles and ions due to bio-tribocorrosion.Journal of Materials Science & Technology. 2020, 46: 98-106.

[5]Zhongwei Wang, Yu Yan, Lijie Qiao. Effect of deformed subsurface on the corrosion resistance of biomedical CoCrMo alloy in simulated physiological solution.Journal of Materials Science. 2020, 55: 13351-13362.

[6]Weijiu Huang,Zhongwei Wang, Qing Zhou, Zhijun Li, Lingguo Zeng. Erosion wear behavior of HSn70-1 copper alloy under multiphase flow.Materials Research Express. 2018, 5: 096510.

[7]Zhongwei Wang, Yu Yan, Lijie Qiao. Protein adsorption on implant metals with various deformed surfaces.Colloids and Surfaces B: Biointerfaces. 2017, 156: 62-70.

[8]Zhongwei Wang, Yu Yan, Lu Xing, Yanjing Su, Lijie Qiao. The role of hard phase carbides in tribocorrosion processes for a Co-based biomedical alloy.Tribology International. 2017, 113: 370-376.

[9]Zhongwei Wang, Yu Yan, Yanjing Su, Lijie Qiao. Effect of electrochemical corrosion on the subsurface microstructure evolution of a CoCrMo alloy in albumin containing environment.Applied Surface Science. 2017, 406: 319-329.

[10]Zhongwei Wang, Yu Yan, Yanjing Su, Lijie Qiao. Effect of proteins on the surface microstructure evolution of a CoCrMo alloy in bio-tribocorrosion processes.Colloids and Surfaces B: Biointerfaces. 2016, 145: 176-184.

[11]Zhongwei Wang, Yu Yan, Lijie Qiao. Tribocorrosion behavior of nanocrystalline metals—a Review.Materials Transactions. 2015, 56: 1759-1763.

[12]Zhongwei Wang, Yu Yan, Lijie Qiao. Nanocrystalline layer on the bearing surfaces of artificial hip implants induced by biotribocorrosion processes.Biosurface and Biotribology. 2015, 1: 130-134.

[13]Zhongwei Wang, Yongliang Su, Qing Li, Yan Liu, Zuxin She, Funan Chen, Longqing Li, Xiaoxu Zhang, Peng Zhang. Researching a highly anti-corrosion superhydrophobic film fabricated on AZ91D magnesium alloy and its anti-bacteria adhesion effect.Materials Characterization. 2015, 99: 200-209.

[14]Zhongwei Wang, Qing Li, Zuxin She, Funan Chen, Longqing Li, Xiaoxu Zhang, Peng Zhang. Facile and fast fabrication of superhydrophobic surface on magnesium alloy.Applied Surface Science. 2013, 271: 182-192.

[15]Zhongwei Wang, Qing Li, Zuxin She, Funan Chen, Longqing Li. Low-cost and large-scale fabrication method for an environmentally-friendly superhydrophobic coating on magnesium alloy.Journal of Materials Chemistry. 2012, 22: 4097-4105.