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作 者:王晓丽[1,2] 周昭昌 黄大志 WANG Xiaoli;CHOU Chauchang;HUANG Dazhi(Jiangsu Key Laboratory of Function Control Technology for Advanced Materials,Huaihai Institute of Technology, Lianyungang 222005,China;Doctoral Degree Program in Ocean Engineering Technology,College of Engineering,Taiwan Ocean University,Keelung 20224,China;Department of Mechanical &Mechatronie Engineering,Taiwan Ocean University,Keelung 20224,China;Marine Resources Development Institute of Jiangsu,Huaihai Institute of Technology, Lianyungang 222005,China)
机构地区:[1]淮海工学院江苏省先进材料功能调控技术重点实验室,江苏连云港222005 [2]台湾海洋大学工学院海洋工程科技博士学位学程,台湾基隆20224 [3]台湾海洋大学机械与机电工程学系,台湾基隆20224 [4]淮海工学院江苏省海洋资源开发研究院,江苏连云港222005
出 处:《热加工工艺》2018年第22期16-20,26,共6页Hot Working Technology
基 金:江苏省先进材料功能调控技术重点实验室资助项目(JKLF CTAM1705);淮海工学院自然科学基金项目(Z2017007);连云港市科技项目(CG1608)
摘 要:总结了多年来复合电沉积技术的研究成果。介绍了复合镀层的电沉积实现方法。从镀层材料、沉积机理、多层膜的制备、软件仿真等方面研究了金属基和其他颗粒的共沉积。在减小颗粒团聚、提升镀层颗粒含量方面,给出了解决方法;同时在增强镀层与固体颗粒结合力,以及提高镀膜与基体结合力方面提出了实用的参考方法,为后续制备高强度、高耐磨性及高膜基结合力或颗粒把持力的复合膜层奠定了基础。The research results of composite electrodeposition technologies over the years were summarized. The application methods for composite electrodeposition were introduced. From the aspects of coating materials, deposition mechanism, the preparation of multilayer films and software simulation, the co-deposition of metal bases and other particles was studied. The solutions for reducing the agglomeration of particles and increasing the content of coating particles were provided. At the same time, the practical reference methods for enhancing the bonding force between the coating and the solid particles and increasing the bonding force between the coating and the substrate were proposed. It can lay the foundation for fabricating composite film with high strength, high wear resistance and high film-based bonding force or good granular holding power.
关 键 词:复合电沉积 金属基一微粒 团聚 结合力 软件仿真
分 类 号:TG174.441[金属学及工艺—金属表面处理]
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