张文峰,郑晓虎.Ni-ZrO2纳米复合电铸层组织结构及磨损形貌[J].表面技术,2010,39(4):21-24.
ZHANG Wen-feng,ZHENG Xiao-hu.Microstructure and Morphology of Worn Surface of Ni-ZrO2Nano-composite Electroformings[J].Surface Technology,2010,39(4):21-24
Ni-ZrO2纳米复合电铸层组织结构及磨损形貌
Microstructure and Morphology of Worn Surface of Ni-ZrO2Nano-composite Electroformings
投稿时间:2010-03-27  修订日期:2010-08-10
DOI:
中文关键词:  纳米复合电铸层  表面形貌  微观结构  耐磨性  磨损机理
英文关键词:nano-composite electroforming  surface morphology  microstructure  wear resistance  abrasion mechanism
基金项目:江苏省高校自然科学重大基础研究资助项目(09KJA460001)
作者单位
张文峰 1.苏州职业大学机电系,苏州215011; 2.西安工业大学机电学院,西安710032 
郑晓虎 淮阴工学院机电系,淮安223003 
AuthorInstitution
ZHANG Wen-feng 1.Department of Mechanical and Electrical Engineering, Suzhou Vocational College, Suzhou 215011, China;2.College of Mechanical and Electrical Engineering, Xi'an Technological University, Xi'an 710032, China 
ZHENG Xiao-hu Department of Mechanical and Electrical Engineering, Huaiyin Institute of Technology, Huaian 223003, China 
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中文摘要:
      通过复合电铸工艺制备Ni-ZrO2纳米复合电铸层,用SEM和TEM对其表面形貌、组织结构进行了分析。研究了镀液中纳米颗粒悬浮量对纳米复合电铸层在干摩擦状态下耐磨性的影响,并观察了纳米复合电铸层磨损后的表面形貌,探讨了磨损机理。结果表明:纳米ZrO2颗粒细化了基质金属的晶粒,使复合电铸层表面光滑平整;复合电铸层由微Ni单晶和多晶以及ZrO2颗粒所组成;纳米颗粒的强化作用使复合电铸层表现出优良的耐磨性,耐磨性的高低取决于纳米颗粒的复合量。
英文摘要:
      The Ni-ZrO2nano-composite electroformings were prepared by composite electroforming. The surface morphology and microstructure were analyzed by SEM and TEM. Under dry friction conditions, the effect of nano-particle content in solution on the wear resistance of the nano-composite electroformings was studied. Furthermore, the surface morphology of worn surface and abrasion mechanism were investigated. The study results show that owing to the existence of nano-ZrO2particles in the composite electroformings, the grain size of the metallic matrixis decreased greatly, and the nano-composite electroformings has a flat surface and compact microstructure. The nano-composite electroformings are composed by Ni single crystal and polycrystal, nano-ZrO2particles. Because of the strengthening effect of nano-particle, nano-composite electroformings exhibit an excellent wear resistance, and changes in their abrasion mechanism take place. The wear resistance of nano-composite electroformings depends on nano-particle content in them.
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