首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >Investigation on tribological behaviour of diesel engine exhaust valve dry sliding against valve seat
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Investigation on tribological behaviour of diesel engine exhaust valve dry sliding against valve seat

机译:柴油机排气门干滑气门座的摩擦学性能研究。

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A high-chromium alloy with 2Cr32Si2MnMo2 available for diesel engine valve seats was fabricated by centrifugal casting to improve valve seat quality. The friction and wear performances of the valve seat dry sliding against an exhaust valve were measured using a SRV testing machine. The test procedures include temperature and load sensitivities and wear. The test temperatures ranged from 100℃ to 280℃ and loads from 50 to 125 N. The friction and wear of the valve seat were found to decrease first and then increase with the increment of temperature or load. Scanning electron microscopy and energy dispersive X-ray spectroscopy analyses revealed the tribofilms contained more friction-increasing Cr_2O_3 and the wear mechanism was a complicated combination of two-body abrasion, three-body abrasion and oxidation. The strong adhesion between the valve and its seat arrested the relative sliding, but with loads going up to 150 N. In most cases, the valve had unexpectedly higher wear resistance than that of its seat over the temperature range, which is ascribed to adhesion to the tribofilms.
机译:通过离心铸造制造了可用于柴油发动机气门座的高铬合金,含2Cr32Si2MnMo2,以提高气门座质量。使用SRV测试机测量了相对于排气门干滑的气门座的摩擦和磨损性能。测试程序包括温度和负载敏感度以及磨损。测试温度范围为100℃至280℃,负载范围为50至125N。发现阀座的摩擦和磨损会随着温度或负载的增加而先降低然后增加。扫描电子显微镜和能量色散X射线光谱分析表明,摩擦膜含有更多的增加摩擦的Cr_2O_3,并且磨损机理是两体磨损,三体磨损和氧化的复杂结合。阀与阀座之间的牢固附着力阻止了相对滑动,但载荷高达150N。在大多数情况下,阀在整个温度范围内的耐磨性都比其阀座高,这出乎意料。摩擦胶卷。

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