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Tribochemistry on Clutch Friction Material Lubricated by Automatic Transmission Fluids and the Link to Frictional Performance

机译:自动变速箱油润滑的离合器摩擦材料的摩擦化学及其与摩擦性能的联系

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Automatic transmissions (AT) for passenger cars are becoming more popular globally, including some countries that traditionally prefer manual transmissions. Some new friction modifiers for transmission fluid technologies have also emerged due to the downsizing trend of transmissions. In order to study the tribology and tribochemistry effects of some new automatic transmission fluid (ATF) additive formulations, both steel and wetclutch friction materials were assessed by using surface analysis techniques. A variable speed friction test (VSFT) rig was used to study the antishudder properties in lock-up clutch tests and friction modifying mechanisms of ATFs. A test oil matrix containing basic ATF components was tested. The friction results were analyzed using both the linear-defined multiple parameter spider chart ATF evaluation (LSAE) method (Zhao et al., 2008, "A New Method to Evaluate the Overall Anti-Shudder Property of Automatic Transmission Fluids - Multiple Parameters Spider Chart Evaluation," Proc. Inst. Mech. Eng., Part J: J. Eng. Tribol., 222(J3), pp. 459-470) and the friction coefficient ratio index method (Zhao et al., 2011, "Understanding Friction Behavior in Automatic Transmission Fluid LVFA Test: A New Positive Curve Parameter to Friction Coefficient Ratio Index Evaluation," ASME J. Tribol., 133(2), p. 021802) (e.g., μ_1/μ_(50) on the low-velocity friction apparatus (LVFA) μ-v curve results to compare the overall tribosystem and the snapshot friction performance during the test). Surface analysis results were obtained by using X-ray photoelectron spectroscopy (XPS), time-of-flight secondary ion mass spectroscopy (ToF-SIMS), and attenuated total reflectance Fourier transformed infrared spectroscopy (ATR FT-IR), and they are presented in this study to investigate the tribofilm compositions formed by different additive formulations. Some organic functional groups were found at the sample surfaces, such as -OH and O-C-O, and their presence is proposed to have a beneficial influence on the ATF friction performance. This paper discusses the surface analysis results of the test sample pieces, the possible links between specific functional groups and friction performance, and the proposed pathways of additive decompositions by using chemical bond dissociation energy comparisons.
机译:乘用车自动变速器(AT)在全球范围内变得越来越流行,包括一些传统上更喜欢手动变速器的国家。由于变速器的小型化趋势,还出现了一些用于变速器流体技术的新型摩擦改进剂。为了研究某些新型自动变速箱油(ATF)添加剂配方的摩擦学和摩擦化学作用,通过使用表面分析技术对钢和湿式离合器摩擦材料进行了评估。使用变速摩擦试验(VSFT)装置研究锁止离合器试验和ATF的摩擦修正机制中的防抖性能。测试了包含基本ATF成分的测试油基质。使用线性定义的多参数蜘蛛图ATF评估(LSAE)方法对摩擦结果进行了分析(Zhao等人,2008,“一种评估自动变速箱油整体抗震性能的新方法-多参数蜘蛛图评估”,Proc。Inst。Mech。Eng。,第J部分:J。Eng。Tribol。,222(J3),第459-470页)和摩擦系数比指数法(Zhao等,2011,“了解自动变速箱油LVFA测试中的摩擦行为:新的正曲线参数与摩擦系数比指数评估,“ ASME J. Tribol。,133(2),第021802页)(例如,低端的μ_1/μ_(50)速度摩擦装置(LVFA)的μ-v曲线结果,以比较整个摩擦系统和测试过程中的快照摩擦性能。通过使用X射线光电子能谱(XPS),飞行时间二次离子质谱(ToF-SIMS)和衰减全反射傅里叶变换红外光谱(ATR FT-IR)获得表面分析结果,并进行了介绍。在这项研究中,研究了由不同添加剂配方形成的摩擦膜组合物。在样品表面发现了一些有机官能团,例如-OH和O-C-O,并且它们的存在被认为对ATF摩擦性能具有有益的影响。本文讨论了试样的表面分析结果,特定官能团与摩擦性能之间的可能联系,以及通过化学键解离能的比较提出的添加剂分解途径。

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