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无油压缩机气缸镀层材料的摩擦磨损试验研究

方燚 范文俊 刘世成 鲍军 闫慧敏 李奉誉

流体机械2026,Vol.54Issue(1):23-29,7.
流体机械2026,Vol.54Issue(1):23-29,7.DOI:10.3969/j.issn.1005-0329.2026.01.004

无油压缩机气缸镀层材料的摩擦磨损试验研究

Experimental study on friction and wear of coating materials for oil-free compressor cylinders

方燚 1范文俊 1刘世成 1鲍军 1闫慧敏 1李奉誉1

作者信息

  • 1. 合肥通用机械研究院有限公司,合肥 230031||高端压缩机及系统技术全国重点实验室,合肥 230031
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摘要

Abstract

To improve the operational performance and service life of oil-free compressors,a study on the friction and wear characteristics of the contact pair between piston rings and cylinder inner walls was conducted.Cylinder surfaces were coated with Teflon,SiC,and DLC,respectively,and filled PTFE was selected as the piston ring material for sliding friction and wear tests.The results show that the friction coefficient time series curve of the friction pair corresponding to the DLC-coated cylinder is the most stable,with the lowest friction factor.The surface morphology of the DLC coating is favorable,and the wear rate of the piston ring is the lowest.The average friction coefficient of the friction pair corresponding to the Teflon coating is the lowest(0.074 6),but due to poor adhesion between the coating and the aluminum alloy substrate,wear is relatively severe.Both SiC and DLC coatings exhibit good adhesion to the substrate.The wear mechanism of all friction pairs is predominantly adhesive wear,with PTFE transfer films of varying morphologies formed on the surface of the counterpart during friction.Under room temperature(25℃)conditions,the transfer films exhibit a flaky structure,with the most complete transfer film observed on the surface of the DLC-coated cylinder.This indicates that the DLC coating is a relatively ideal optimization solution for cylinder surfaces.The study provides a theoretical basis for the optimized design of oil-free compressors.

关键词

无油压缩机/气缸/活塞环/摩擦磨损/转移膜

Key words

oil-free compressor/cylinder/piston ring/friction and wear/transfer film

分类

机械制造

引用本文复制引用

方燚,范文俊,刘世成,鲍军,闫慧敏,李奉誉..无油压缩机气缸镀层材料的摩擦磨损试验研究[J].流体机械,2026,54(1):23-29,7.

基金项目

安徽省重点研究与开发计划项目(202004a05020006) (202004a05020006)

流体机械

1005-0329

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