Analysis of Hydrodynamic Journal Bearings Having Non-Newtonian Lubricants (Prandtl Model) by a Finite Element Method:

S. Tayal, R. Sinhasan, D. Singh
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引用次数: 9

Abstract

Additives are used to improve the performance of commercial lubricants. These lubricants behave like non-Newtonian fluids (shear thinning or shear thickening). The effect of the nonlinear behaviour on the performance characteristics of finite width journal bearings is investigated using the Prandtl model. The finite element method, using Galerkin's technique, has been used to solve the Navier-Stokes equations in cylindrical coordinates, representing the flow-field in the clearance space of a bearing using Newtonian fluids, and the non-Newtonian effect is introduced by modifying the viscosity term for the model in each iteration. The results applicable to shear-thinning (pseudoplastic) and shear-thickening (dilatant) lubricants are compared with the established results for Newtonian lubricants.
非牛顿润滑滑动轴承的有限元分析(Prandtl模型)
添加剂用于改善商用润滑油的性能。这些润滑剂的行为类似于非牛顿流体(剪切变薄或剪切变厚)。利用普朗特模型研究了非线性行为对有限宽度滑动轴承性能特性的影响。利用Galerkin技术,采用有限元方法在圆柱坐标系下求解了Navier-Stokes方程,该方程采用牛顿流体表示轴承间隙空间中的流场,并通过修改每次迭代模型的粘度项引入了非牛顿效应。并将适用于剪切减薄(假塑性)和剪切增厚(膨胀)润滑剂的结果与牛顿润滑剂的既定结果进行了比较。
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