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In-situ observations of the effect of the ZDDP tribofilm growth on micropitting

机译:原位观察ZDDP呋喃染豆生生长对微量的影响

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摘要

The ongoing trend for using ever lower viscosities of lubricating oils, with the aim of improving the efficiency of mechanical systems, means that machine components are required to operate for longer periods under thin film, mixed lubrication conditions where the risk of surface damage is increased. For this reason, the role of zinc dialkyldithiophosphate (ZDDP) antiwear lubricant additive has become increasingly important in order to provide adequate surface protection. It is known that due to its exceptional effectiveness in reducing surface wear, ZDDP may promote micropitting by preventing adequate running-in of the contacting surfaces. However, the relationship between ZDDP tribofilm growth rate and the evolution of micropitting has not been directly demonstrated. To address this, we report the development of a novel technique using MTM-SLIM to obtain micropitting and observe ZDDP tribofilm growth in parallel throughout a test. This is then applied to investigate the effect of ZDDP concentration and type on micropitting.
机译:使用润滑油粘度较低的持续趋势,目的是提高机械系统的效率,意味着机器部件需要在薄膜下更长的时间,混合润滑条件下降,其中表面损伤的风险增加。因此,锌二烷基二磷酸(ZDDP)抗磨润滑剂添加剂的作用越来越重要,以便提供足够的表面保护。众所周知,由于其在减小表面磨损方面的特殊效果,ZDDP可以通过防止接触表面的充分延续来促进微量化。然而,ZDDP呋喃甲虫生长速率与微量化的演变之间的关系尚未直接证明。为了解决这一点,我们报告了使用MTM-SLIM的新技术的开发,以获得微观,并在整个测试中平行观察ZDDP呋喃酚生长。然后应用这一点以研究ZDDP浓度和类型对微量的影响。

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