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  1. Passar bra ihop
  2. Elastohydrodynamic Lubrication for Line and Point Contacts: Asymptotic and Numerical Approaches
  3. Elastohydrodynamic lubrication for line and point contacts : asymptotic and numerical approaches
  4. Ilya Kudish - Google Scholar Citations

It is caused by inherent material defects and repeated stresses occurring in material. Kudish works with 17 other international experts to identify research models to solve the physical problems associated with rolling contact fatigue. One real-world problem requiring lubrication solutions is found in transporting heavy loads. I have made progress in reducing the two-dimensional point , heavily-loaded lubrication problem to a one-dimensional line , heavily-loaded lubrication problem.

The numerical methods for solving the isothermal elastohydrodynamic lubrication EHL problems for heavily-loaded contacts are generally unstable. However, in the past, lubrication mechanisms were not well understood. Prediction of lubrication performance was first successful for conformal contact problems. In , O. Reynolds published his milestone Skip to main content Skip to table of contents. Encyclopedia of Tribology Edition. Editors: Q. Contents Search.

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How to cite. Background and Early Studies —s It has long been well known that lubrication is vital to efficiency and durability of machine elements, and one of the best ways to improve performance and life is to form lubricant films that separate the contacting surfaces. This is a preview of subscription content, log in to check access. Ai, Numerical analyses of elastohydrodynamically lubricated line and point contacts with rough surfaces by using semi-system and multigrid methods.

Archard, E. Cowking, Elastohydrodynamic lubrication at point contacts. Bair, M. Bair, W. Barus, Isothermals, isopiestics, and isometrics relative to viscosity. XLV , 87—96 Third Series Google Scholar. Cann, J. Hutchinson, H. Spikes, The development of a spacer layer imaging method SLIM for mapping elastohydrodynamic contacts. Cheng, A numerical solution of the elastohydrodynamic film thickness in an elliptical contact. Cheng, B. Sternlicht, A numerical solution for the pressure, temperature, and film thickness between Two infinitely long, lubricated rolling and sliding cylinders, under heavy loads.

Basic Eng. Cheng, Calculation of elastohydrodynamic film thickness in high speed rolling and sliding contacts.

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Elastohydrodynamic Lubrication for Line and Point Contacts: Asymptotic and Numerical Approaches

Chevalier, A. Lubrecht, P. Cann, F. Colin, G. Dalmaz, Film thickness in starved EHL point contacts. Chiu, An analysis and prediction of lubricant film starvation in rolling contact systems. ASLE Trans.


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  • Elastohydrodynamic lubrication for line and point contacts; asymptotic and numerical approaches..

Cook, C. Herbst, H. King Jr. Crook, The lubrication of rollers — II. Film thickness with relation to viscosity and speed. A , — CrossRef Google Scholar.

Elastohydrodynamic lubrication for line and point contacts : asymptotic and numerical approaches

Crook, The lubrication of rollers — IV. Measurements of friction and effective viscosity. Dawson, Effect of metallic contact on the pitting of lubricated rolling surfaces. Doolittle, Studies in Newtonian flow II the dependence of the viscosity of liquids on free-space. Dowson, G. Higginson, A numerical solution to the elastohydrodynamic problem. Higginson, New roller bearing lubrication formula. Engineering , — Google Scholar. Dowson, A. Whitaker, A numerical procedure for the solution of the elastohydrodynamic problem of rolling and sliding contacts lubricated by a Newtonian fluid. Dowson, S.

Toyoda, A central film thickness formula for elastohydrodynamic line contacts, in Proceedings of 5th Leeds-Lyon Symposium on Tribology , Leeds, pp. Dyson, H.


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Naylor, A. Wilson, The measurement of film thickness in elastohydrodynamic contacts. Ertel, Hydrodynamic lubrication based on new principles. Evans, T. Hughes, Evaluation of deflection in semi-infinite bodies by a differential method. Evans, R.

Ilya Kudish - Google Scholar Citations

Snidle, Inverse solution of Reynolds equation of lubrication under point contact elastohydrodynamic conditions. Felix-Quinonez, P. Ehret, J. Summers, On three-dimensional flat-top defects passing through an EHL point contact: a comparison of modeling with experiments. Foord, L. Wedeven, F. Westlake, A. Cameron, Optical elastohydrodynamics.

Gohar, A. Cameron, Optical measurement of Oil film thickness under elastohydrodynamic lubrication. Nature , — CrossRef Google Scholar. Cameron, The mapping of elastohydrodynamic contacts. Greenwood, J. Tripp, The contact of Two nominally flat rough surfaces. Grubin, Fundamentals of the hydrodynamic theory of lubrication of heavily loaded cylindrical surfaces Central Scientific Research Institute for Technology and Mechanical Engineering, Moscow, Book No. Merged citations. This "Cited by" count includes citations to the following articles in Scholar. Add co-authors Co-authors.

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