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首页> 外文期刊>Tribology Letters >Full Film, Boundary Lubrication and Tribochemistry in Steel Circular Contacts Lubricated with Glycerol
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Full Film, Boundary Lubrication and Tribochemistry in Steel Circular Contacts Lubricated with Glycerol

机译:甘油润滑的钢制圆形触点的全膜,边界润滑和摩擦化学

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摘要

In this article, the lubricating properties of pure glycerol are investigated under both mild and severe EHL regimes. Amazingly low friction coefficients (about 0.01) are reported by experiments in thick film regimes compared to traditional base oils. EHL calculations of film thickness and friction (including thermal effects) predict friction coefficients that are twice those actually found for glycerol. Chemical analysis of glycerol before and after the friction tests were performed by NMR and Karl Fischer methods, and they reveal that water is produced by tribochemical reaction as well as other species like aldehydes. This finding is in agreement with a corrosion pattern observed inside the wear scars of the steel samples. This study provides an explanation to the anomalously low friction observed in the thick film regime. In fact, water produced in the lubricant decreases traction forces due to the drastic decrease of the viscosity of glycerol with water addition.
机译:在本文中,研究了在轻度和重度EHL模式下纯甘油的润滑性能。与传统基础油相比,厚膜条件下的实验报告了惊人的低摩擦系数(约0.01)。薄膜厚度和摩擦力(包括热效应)的EHL计算得出的摩擦系数是甘油的两倍。摩擦试验前后的甘油化学分析是通过NMR和Karl Fischer方法进行的,他们揭示出水是通过摩擦化学反应以及醛等其他物质产生的。这一发现与在钢样品的磨损痕迹中观察到的腐蚀模式相符。这项研究为厚膜状态下异常低摩擦提供了解释。实际上,由于添加水使甘油的粘度急剧降低,因此润滑剂中产生的水降低了牵引力。

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