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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Tribological evaluation of oil pump relief valve coatings compatible with an aluminum oil pump body
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Tribological evaluation of oil pump relief valve coatings compatible with an aluminum oil pump body

机译:与铝油泵体兼容的油泵溢流阀涂层的摩擦学评估

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摘要

Wear can cause automotive relief valves to jam. In order to evaluate and screen candidate coatings for oil pump relief valves for reduction of aluminum pump cylinder bore wear and wear-related sticking, a laboratory reciprocating wear test using production parts has been developed. The coatings on valves include impinged and physical vapor deposited (PVD)-coated molybdenum disulfides, electroplated nickel-phosphorous with polytetrafluoroethylene (Ni-PTFE), electroplated bronze, and electroplated nickel-phosphorous-boron nitride (Ni-P-BN). The test results showed that the electroplated bronze coating demonstrated the best wear resistance against 380 aluminum pump bores while Ni-PTFE ranked second, PVD-coated MoS{sub}2 third, and Ni-P-BN ranked last. It was observed that the electroplated bronze coating showed only mild oxidative or abrasive wear after 20 h wear test. The Ni-P-BN coating gave the worst wear resistance due to severe abrasive wear, surface scoring, and coating abrasion during the wear test. The major wear mechanisms for valve bore/relief valve can be classified at different levels from mild wear (oxidative wear or surface delamination) to abrasive wear (scoring, scuffing, and ploughing). This paper also reviewed the rooted wear mechanisms of production pump relief valves against aluminum bores based on metallographic observations of worn surfaces after field tests. This tribological investigation of valve coatings has provided insights into the fundamental wear mechanisms which depend on the compatibility of two sliding materials, protective coating composition, hard particle content, and surface interaction. The information will be useful in preventing oil pump relief valves from jamming.
机译:磨损会导致汽车安全阀卡住。为了评估和筛选油泵溢流阀的候选涂层,以减少铝泵缸孔的磨损和与磨损相关的粘连,已开发了一种使用生产零件的实验室往复磨损测试。阀门上的涂层包括撞击式和物理气相沉积(PVD)涂层的二硫化钼,聚四氟乙烯(Ni-PTFE)电镀的镍-磷,电镀青铜和电镀的氮化镍-磷-硼硼(Ni-P-BN)。测试结果表明,电镀青铜涂层对380个铝泵孔表现出最佳的耐磨性,而Ni-PTFE排名第二,PVD涂层MoS {sub} 2排名第三,Ni-P-BN排名最后。据观察,电镀青铜涂层在20 h磨损试验后仅显示出轻微的氧化或磨蚀磨损。 Ni-P-BN涂层由于严重的磨料磨损,表面划痕和磨损测试中的涂层磨损而导致最差的耐磨性。气门腔/泄压阀的主要磨损机理可分为轻度磨损(氧化磨损或表面分层)到磨料磨损(刮擦,刮擦和刮擦)不同的等级。本文还根据现场测试后对磨损表面的金相观察,回顾了生产泵泄压阀对铝孔的根本磨损机理。阀门涂层的这一摩擦学研究为基础磨损机理提供了见识,而磨损机理取决于两种滑动材料的相容性,保护涂层的成分,硬颗粒含量和表面相互作用。该信息将有助于防止油泵溢流阀卡住。

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