Transient elastohydrodynamic point contact analysis using a new coupled differential deflection method Part 2: results
نویسندگان
چکیده
The paper presents results obtained using a transient analysis technique for point contact elastohydrodynamic lubrication (EHL) problems based on a formulation that effectively couples the elastic and hydrodynamic equations. Results are presented for transverse ground surfaces in an elliptical contact that show severe ®lm thinning at the transverse limits of the contact area. This thinning is caused by transverse (side) leakage of the lubricant from the contact in the remaining deep valley features. Comparison is made between the elliptical contact results on the entrainment centreline and the equivalent line contact analysis. This con®rms the importance of edge effects as a likely cause of ®lm collapse and scuf®ng failure. The surface pro®les used in the analysis are taken from test discs used in scuf®ng experiments and from gears used in micropitting tests. Side leakage is found to be suf®ciently severe to cause microasperity contact in the numerical examples presented. This contact mainly occurs close to the edges of the corresponding Hertzian area and correlates in position with the location at which scuf®ng is found to ®rst occur in the earlier experiments. Comparisons are made with other numerical results for point contact con®gurations with sinusoidally varying surface features obtained by Zhu (2000) and considerable differences are seen in the calculated extent of asperity contact. The differences are thought to be due to the simpli®ed treatment of the lubrication equation adopted by Zhu.
منابع مشابه
Transient elastohydrodynamic point contact analysis using a new coupled differential deflection method Part 1: theory and validation
The paper presents a transient analysis technique for point contact elastohydrodynamic (EHL) lubrication problems using coupled elastic and hydrodynamic equations. Full coupling is made possible by use of a novel differential de ̄ection formulation. The way in which the differential de ̄ection is incorporated into the overall solution method for a point contact is discussed. A range of spatial an...
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