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首页|期刊导航|沈阳工业大学学报|活塞环表面Cr/CrN纳米多层膜的微观结构与摩擦学性能

活塞环表面Cr/CrN纳米多层膜的微观结构与摩擦学性能

蔡志海 底月兰 张平

沈阳工业大学学报2011,Vol.33Issue(4):375-381,7.
沈阳工业大学学报2011,Vol.33Issue(4):375-381,7.

活塞环表面Cr/CrN纳米多层膜的微观结构与摩擦学性能

Microstructure and tribological property of Cr/CrN nano-multilayer film deposited on piston ring

蔡志海 1底月兰 1张平1

作者信息

  • 1. 装甲兵工程学院,装备再制造技术国防科技重点实验室,北京100072
  • 折叠

摘要

Abstract

In order to improve the tribological property of an engine piston ring and increase its service life,a Cr/CrN nano-multilayer film was prepared on the surface of the piston ring with multi-arc ion plating technology.The microstructure,element distribution,nanohardness and slide wear resistance of the Cr/CrN nano-multilayer film with different modulation periods were systematically analyzed with X-ray diffractometer(XRD),transmission electron microscope(TEM),auger energy spectrometer(AES),nanohardness tester as well as CETR friction and wear tester,respectively.The results show that the Cr/CrN multilayer film is composed of CrN,Cr2N and Cr phases,and the preferential orientation of the film appears in CrN(200) direction.With reducing the modulation period,the hardness and residual stress of the film increase.When the modulation period is 80 nm,the hardness of the film reaches the maximum value of 21.5 GPa.When the modulation period is 120 nm,the H3/E2 value attains the maximum level and the scratch critical load value is highest as well.The results of friction and wear experiment show that compared with the electroplated Cr and CrN layers,the Cr/CrN multilayer film has relatively better slide wear resistance,and the corresponding wear mechanism is mainly abrasive wear.The Cr/CrN multilayer film is possibly replace the electroplated Cr layer deposited on the piston ring.

关键词

活塞环/离子镀/铬/氮化铬/纳米多层膜/调制周期/微观结构/摩擦学性能/Cr电镀层

Key words

piston ring/ion plating/Cr/CrN/nano-multilayer film/modulation period/microstructure/tribological property/electroplated Cr layer

分类

矿业与冶金

引用本文复制引用

蔡志海,底月兰,张平..活塞环表面Cr/CrN纳米多层膜的微观结构与摩擦学性能[J].沈阳工业大学学报,2011,33(4):375-381,7.

基金项目

国家自然科学基金资助项目(50901089). ()

沈阳工业大学学报

OA北大核心CSTPCD

1000-1646

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