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Frictional Properties of Automatic Transmission Fluids: Part I-Measurement of Friction-Sliding Speed Behavior

机译:自动变速箱油的摩擦特性:第一部分,摩擦滑动速度行为的测量

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For a wet clutch in an automatic transmission to operate efficiently and smoothly, it is essential that the friction in the clutch contact be high over the whole sliding speed range and also increase with sliding speed. This is achieved by careful design, both of the friction disc material and morphology and of the automatic transmission fluid. This article describes the development and use of a new test rig, based on a mini-traction machine (MTM), to measure the impact on wet clutch friction versus sliding speed properties of a range of additive solutions as well as a fully formulated automatic transmission fluid (ATF). It is found that most organic friction modifiers reduce friction at low sliding speed, whereas succinimide dispersants and some sulfonate detergent additives raise friction over the whole speed range. Overbased and neutral detergents give almost identical friction curves, indicating that, although a calcium carbonate film is deposited on the steel ball when overbased detergent is present, this does not influence friction, which is controlled by the alkyl group on the sulfonate. When long- and medium-chain surfactants are blended in proportions likely to result in a mixed adsorbed film, the resultant blends give higher low-speed friction than either individual surfactant, suggesting that the homogeneity of the adsorbed film plays an important role in determining its low-speed friction behavior. In a companion article, Part II, these results are used in combination with other work and analysis to identify the mechanism by which formulated ATFs are able to provide high friction that increases with sliding speed (Ingram, et al. (1)).
机译:为了使自动变速器中的湿式离合器有效且平稳地工作,必须在整个滑动速度范围内使离合器接触中的摩擦力高,并且还随着滑动速度而增加。这是通过仔细设计摩擦盘材料和形态以及自动变速箱油实现的。本文介绍了基于微型牵引机(MTM)的新型试验台的开发和使用,以测量一系列添加剂解决方案以及全配方自动变速器对湿式离合器摩擦与滑动速度特性的影响流体(ATF)。发现大多数有机摩擦改进剂在低滑动速度下都会降低摩擦,而琥珀酰亚胺分散剂和某些磺酸盐清净剂添加剂会在整个速度范围内增加摩擦。高碱性和中性清净剂的摩擦曲线几乎相同,这表明,尽管存在高碱性清净剂时在钢球上沉积了碳酸钙膜,但这并不影响由磺酸盐上的烷基控制的摩擦。当长链和中链表面活性剂的混合比例可能会导致混合的吸附膜时,所得共混物比任何一种表面活性剂均具有更高的低速摩擦力,这表明吸附膜的均质性在确定其吸附性方面起着重要作用。低速摩擦行为。在第二部分的配套文章中,将这些结果与其他工作和分析结合使用,以确定所配制的ATF能够提供随滑动速度增加的高摩擦的机理(Ingram等人(1))。

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