润滑油
粘弹性
材料科学
剪切速率
剪应力
机械
牵引(地质)
剪切模量
非牛顿流体
复合材料
粘度
机械工程
工程类
物理
作者
Pradeep K. Gupta,H. S. Cheng,Danyang Zhu,Nelson H. Forster,J. B. Schrand
出处
期刊:Tribology Transactions
日期:1992-01-01
卷期号:35 (2): 269-274
被引量:125
标识
DOI:10.1080/10402009208982117
摘要
Analytical formulations for the computation of lubricant film thickness and traction in a high-speed rolling-sliding contact are presented with the objective of investigating the viscoelastic response of the MIL-L-7808-type lubricant Two types of relations are used to model the viscous shear strain rate. In the Type I model, a hyperbolic sine relation is used to model the viscous effect which becomes significant when the shear stress reaches a critical value. The Type II model employs a limiting shear stress, which the lubricant can withstand, and an inverse hyperbolic tangent function is considered to model the viscous behavior. Both models are based on three fundamental properties: lubricant viscosity, shear modulus and a critical shear stress. While the viscosity relations may be obtained by direct measurements, estimates of shear modulus and critical shear stress may be derived by curve-fitting the model predictions to experimental traction data.
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