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首页> 外文期刊>Tribology International >Measuring tappet rotation in a valvetrain rig when lubricated in a fully formulated oil containing MoDTC-type friction modifier
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Measuring tappet rotation in a valvetrain rig when lubricated in a fully formulated oil containing MoDTC-type friction modifier

机译:在含有MODTC型摩擦改进器的完全配制的油状物中润滑时测量阀杆旋转

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摘要

In a direct acting valve train configuration, tappet rotation plays a key role in improving lubrication, reducing wear and friction. However, to the best of the authors' knowledge, no studies were found to investigate the rotation off tappet under the effect of different coatings, thicknesses of tappets and formulations with Molybdenum Dialkyl Dithiocarbamate (MoDTC) which has been recently reported to be detrimental to Diamond-Like Carbon (DLC) wear. In this work, a new technique of measuring tappet rotation has been developed. A giant magneto resistance (GMR) sensor coupled with a split pole ferrite disk magnet was used. The sensor was installed very close to the tappet/bucket while the magnet was mounted into the underside of the tappet. Experiments were performed using standard production steel tappets coated with Mn-phosphate (MnPO4) and diamond-like carbon (DLC) coatings. In general, results showed that the tappet rotation is strongly dependant on oil formulation, clearance, speed/temperature, and surface roughness of the coating. MoDTC promoted the rotation of the tappet under both coatings. In addition, DLC inserts showed an increase in tappet rotation as compared to MnPO4 inserts. Nevertheless, regardless of the type of coating, the thickest tappets showed the highest rotation.
机译:在直接作用阀门火车组件中,挺杆旋转在改善润滑,减少磨损和摩擦方面起着关键作用。然而,据作者所知,没有发现研究在不同涂料的效果,挺杆和配方用钼二硫代氨基甲酸酯(MODTC)的旋转下的旋转突出的研究,这是最近据报道对钻石有害的 - 状碳(DLC)磨损。在这项工作中,已经开发出一种测量挺杆旋转的新技术。使用巨型磁阻(GMR)传感器与分割杆铁氧体盘磁铁连接。传感器安装非常靠近挺杆/铲斗,而磁铁安装在挺杆的下侧。使用涂有Mn-磷酸盐(MNPO4)和金刚石碳(DLC)涂层的标准生产钢拟陶器进行实验。通常,结果表明,挺杆旋转强烈依赖于涂层的油配方,间隙,速度/温度和表面粗糙度。 MODTC在两种涂层下促进挺杆的旋转。此外,与MNPO4插入件相比,DLC插入件显示挺杆旋转的增加。然而,无论涂层类型如何,最厚的挺杆都显示出最高旋转。

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