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首页> 外文期刊>Journal of Tribology >The Generalized Newtonian Fluid Model and Elastohydrodynamic Film Thickness
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The Generalized Newtonian Fluid Model and Elastohydrodynamic Film Thickness

机译:广义牛顿流体模型和弹性流体动力膜厚度

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摘要

The nature of real shear-thinning in elastohydrodynamic contacts is well-known from both experimental measurement and nonequilibrium molecular dynamics to follow a power-law. Shear-thinning will affect the film thickness when the Newtonian limit is low enough to occur in the inlet zone (less than about 1 MPa shear stress). Then kinetic theory tells us that film thinning should occur for molecular weight greater than 2000 kg/kmot. We present a review of generalized Newtonian models, flow curves for real lubricants and comparison of calculated and measured film thickness. The calculations utilize measurable liquid behavior, in contrast to most previous work.
机译:弹性流体动力接触中实际剪切稀化的性质从实验测量和遵循幂律的非平衡分子动力学中众所周知。当牛顿极限足够低以至于在进口区域中发生剪切剪切变薄时,会影响薄膜厚度(剪切应力小于1 MPa)。然后,动力学理论告诉我们,当分子量大于2000 kg / kmot时,应发生薄膜减薄。我们将介绍广义牛顿模型,真实润滑剂的流动曲线以及计算和测量的膜厚比较。与大多数以前的工作相比,这些计算利用了可测量的液体行为。

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