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- W2023959966 abstract "Abstract Experiments were carried out to examine the friction and wear behavior of an electrically conductive polyester-carbon film during small amplitude reciprocating sliding against some typical noble metal alloys. The effects of normal load and environmental humidity on friction and wear were examined. A method was devised to monitor continuously the wear of the film based on the increase in its bulk electrical resistance. The frictional force was also monitored during sliding, providing a simultaneous record of both friction and wear. A linear regression analysis of the test results yielded a fourth power relation between wear and friction, indicating the probable occurrence of an adhesive wear mechanism. During sliding at low humidity, the sliding surfaces acquired a relatively smooth, polished appearance and the wear coefficient of the film was of the order of 10 −8 . These observations suggest that burnishing, resulting from the loss of material on a molecular scale, was the wear mechanism at low humidity. At relative humidities above about 40%, the wear mechanism shifted towards moderate adhesive wear; friction was higher, the wear surfaces were noticeably rougher and the wear coefficient of the film was in the range 10 −7 /210 −6 . Implications of these findings for the use of the unlubricated or poorly lubricated polyester-carbon film in demanding position control applications are discussed." @default.
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- W2023959966 date "1989-08-01" @default.
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- W2023959966 title "Burnishing and adhesive wear of an electrically conductive polyester-carbon film" @default.
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- W2023959966 doi "https://doi.org/10.1016/0043-1648(89)90077-x" @default.
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