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EHL Contact Temperature - Comparison of Theoretical and Experimental Determination

机译:EHL接触温度 - 理论和实验测定的比较

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Highly loaded rolling and sliding elastohydrodynamically lubricated (EHL) contacts e.g. at gears are subject to shear and compressive heating of the lubricant film in the contact. Mainly by conduction and convection, the heat is distributed in the lubricant film and solid bodies resulting in an EHL contact temperature distribution. As viscosity, density, rheological behavior and oxidation stability of lubricants as well as tribofilm formation depend significantly on EHL contact temperature, its accurate prediction is crucial for the design of machine elements. However, theoretically calculated and measured EHL contact temperatures often show considerable discrepancies. Hence, this paper discusses the influence of different thin film sensor designs as well as the impact of different coatings for electrical insulation on the measured EHL contact temperature. Simulated results are obtained from a thermal EHL contact model considering non-Newtonian fluid behavior. Measured results are from the FZG twin disc test rig using thin film sensors.
机译:高负荷的轧制和滑动弹性流体动力学润滑(EHL)触点例如。在齿轮上透视接触中的润滑剂膜的剪切和压缩加热。主要通过传导和对流,热量分布在润滑膜和固体中,导致EHL接触温度分布。作为粘度,密度,流变行为和润滑剂的氧化稳定性以及呋喃木形成显着依赖于EHL接触温度,其精确的预测对于机器元件的设计至关重要。然而,理论上计算和测量的EHL接触温度通常显示出相当大的差异。因此,本文讨论了不同薄膜传感器设计的影响以及不同涂层对电绝缘涂层对测量EHL接触温度的影响。考虑非牛顿流体行为,从热EHL接触模型获得模拟结果。测量结果来自FZG双盘试验台,使用薄膜传感器。

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