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Anti-shudder mechanism of ATF additives

机译:ATF添加剂的抗颤动机制

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摘要

A slip-controlled lock-up clutch system has been widely adapted in automatic transmissions for improving the fuel efficiency of the vehicle. The slip-control might induce a vibration, a so-called "shudder", caused by a stick-slip between the clutch surfaces. To prevent shudder from occurring for a long time, ATFs are required having a good anti-shudder property and improving anti-shudder durability. -In this study, the anti-shudder effect of ATF additives and their mechanisms have been investigated. The addition of over-based Ca-sulfonate and friction modifiers (FMs) remarkably improved the anti-shudder durability of ATF. From the results of surface analyses. it was found that the shudder occurrence was correlated with the contact area roughness and the boundary frictional property of the steel plate surface. Large contact area roughness and low boundary friction coefficient were preferred to prevent shudder. It was suggested that the increase in the contact area roughness was caused by the over-based Ca-sulfonate and that lowering the boundary friction coefficient was caused by the over-based Ca-sulfonate and the FMs.
机译:滑动控制的锁定离合器系统已广泛适用于自动变速器,用于提高车辆的燃料效率。滑动控制可能诱导振动,所谓的“颤动”,由离合器表面之间的粘滑引起。为了防止长时间发生颤动,需要具有良好的抗颤动性能并提高抗颤动耐久性的ATF。 - 本研究中,研究了ATF添加剂的抗颤动作用及其机制。添加过基的Ca-磺酸盐和摩擦改性剂(FMS)显着提高了ATF的抗颤动耐久性。从表面分析结果。结果发现,钢板表面的接触面积粗糙度和边界摩擦性能相关。大接触面积粗糙度和低边界摩擦系数是优选防止颤动的。建议接触面积粗糙度的增加是由基于过基的Ca-磺酸盐引起的,降低边界摩擦系数是由基于超亚磺酸和FMS引起的。

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