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Development of valve train rig for assessment of cam/follower tribochemistry.

机译:开发用于评估凸轮/从动件摩擦化学的气门机构。

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摘要

Component bench tests are a crucial part of a tribology assessment experimental programme for most engines and subsystems. This is because they test the components under conditions simulating the operating characteristics of the system. These have become very important as they shed more light into the friction, wear, lubrication and importantly for this study, the tribochemistry of valve train systems. This work outlines the procedure for the development of a single cam rig (SCR) from a 1.25L FORD Zetec (SE) engine. Friction plots were used to validate the data obtained from the newly developed single cam rig with Mn-phosphate coated and polished follower against a cast iron camshaft. The tribofilm formed using normal and mid Sulphated Ash, Phosphorus and Sulphur (SAPS) 5W-30 oils were evaluated and correlated to the friction and wear properties of the tribopair.Raman and FIB-SEM/EDX investigations of the tribochemical films showed that the normal SAPS oil produced patchy, thick (80-100. nm) and well dispersed tribofilm with better wear prevention capabilities. It was observed that Mid SAPS oil had lower wear prevention due to loosely dispersed and thin tribofilms. Absence of tribofilms at the centre of the insert with this oil also suggests that formation and removal processes are an integral part of the wear mechanisms in highly loaded cam follower systems.
机译:对于大多数发动机和子系统,零件台架试验是摩擦学评估实验计划的关键部分。这是因为它们在模拟系统运行特性的条件下测试组件。这些已变得非常重要,因为它们使人们更加了解摩擦,磨损,润滑,并且对于本研究重要的是气门机构系统的摩擦化学。这项工作概述了使用1.25升FORD Zetec(SE)发动机开发单凸轮装置(SCR)的过程。摩擦图用于验证从新开发的单凸轮式钻机获得的数据,该单凸轮式钻机在铸铁凸轮轴上涂覆了锰磷酸盐,并进行了抛光。对使用普通和中度硫化灰,磷和硫(SAPS)5W-30油形成的摩擦膜进行了评估,并将其与摩擦对的摩擦磨损特性相关联。拉曼和FIB-SEM / EDX对摩擦化学膜的研究表明,正常摩擦SAPS油可产生斑片状,稠密的(80-100。nm)且分散良好的摩擦膜,具有更好的防磨损性能。观察到,由于松散分散且薄的摩擦膜,中型SAPS油的防磨性较低。这种油在刀片中心没有摩擦膜,这也表明在高负荷凸轮从动件系统中,形成和去除过程是磨损机制的组成部分。

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