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首页> 外文期刊>Tribology Letters >Friction Characteristics and Topography of Tribofilms from Anti-Wear Additives Applied to Metal V-Belt Type CVT Fluids
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Friction Characteristics and Topography of Tribofilms from Anti-Wear Additives Applied to Metal V-Belt Type CVT Fluids

机译:适用于金属V型皮带CVT流体的抗磨添加剂的摩擦膜摩擦学特性和形貌

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摘要

This study has investigated potential links between tribological performance and the morphology of tribofilms formed from anti-wear additives with application to metal V-belt pushing type continuously variable transmission fluids (B-CVTFs). The influence of metal–metal tribological properties of anti-wear additives was evaluated using a ball on plate tribometer, enabling friction and lubricant film formation to be monitored during reciprocating tests. Contact mode atomic force microscopy was utilised to investigate the nature of tribofilms at the nanometre scale. As a result, an additive formulation composed of hydrogen phosphite and over-based calcium sulphonate in a hydro-cracked mineral Group II base oil demonstrated a synergism with 8% higher friction coefficient and more stable film formation than the individual additive cases, providing a positive outcome for a B-CVTF. Tribofilm species produced by a chemical reaction between hydrogen phosphite and over-based calcium sulphonate were densely deposited on the wear scar to form a rougher surface, which may explain the higher friction observed.
机译:这项研究调查了摩擦性能和由抗磨添加剂形成的摩擦膜的形态之间的潜在联系,并将其应用于金属V带推动式无级变速传动液(B-CVTFs)。使用板球式摩擦计评估了抗磨添加剂的金属-金属摩擦学性能的影响,从而可以在往复式测试中监控摩擦和润滑剂膜的形成。接触模式原子力显微镜用于研究纳米级摩擦膜的性质。结果,在加氢裂化的矿物II类基础油中,由亚磷酸氢盐和高碱性磺酸钙组成的添加剂配方表现出协同作用,其摩擦系数比单独的添加剂情况高8%,并且成膜更稳定,从而提供了积极的效果。 B-CVTF的结局。亚磷酸氢盐与高碱性磺酸钙之间发生化学反应而产生的摩擦膜物质密集地沉积在磨损痕迹上,形成较粗糙的表面,这可能解释了观察到的更高的摩擦力。

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