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Complete isothermal solution for the viscous regime of concentrated contact traction

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Języki publikacji
EN
Abstrakty
EN
There is sufficient understanding of the rheology of traction in the viscous regime to make accurate calculations from measurable properties. It is no longer necessary to invoke fictitious viscosity or shear-thinning laws.
Słowa kluczowe
Rocznik
Strony
719--727
Opis fizyczny
Bibliogr. 13 poz., wykr.
Twórcy
autor
  • Georgia Institute of Technology, Mechanical Engineering Atlanta, GA 30332-0405, U.S.A.
Bibliografia
  • [1] Bair S. (1995): Recent developments in high-pressure rheology of lubricants, In: Lubricants and Lubrication (D. Dowson, C. Taylor, T. Childs and G. Dalmaz, Eds.). -Elsevier, pp.169-187.
  • [2] Bair S. (2000): Pressure-viscosity behavior of lubricants to 1.4GPa and its relation to EHD traction. - STLE, Trib. Trans., vol.43, No.l, pp.91-99.
  • [3] Bair S. and Winer W.O. (1993): A new high-pressure, high-shear stress viscometer and results for lubricants. - Trib. Trans., vol.36, pp.721-725.
  • [4] Bair S., Qureshi F. and Winer W.O. (1993): Observations of shear localization in liquid lubricants under pressure. - Trans. ASME, J. of Trib., vol.115, No.3, pp.507-514.
  • [5] Bridgman P.W. (1931): The Physics of High Pressure. - New York: Dover.
  • [6] Bridgman P.W. (1949): Viscosities to 30000kg/cm2 , especially certain liquids. - Proc. Am. Acad. Arts Sci., vol.77, pp. 117-128.
  • [7] Greenwood J.A. (2001): Non-Newtonian lubrication, In: Tribology Research: From Model Experiment to Industrial Problem (G. Dalmaz, A.A. Lubrecht, D. Dowson and M. Priest, Eds.). - Proc. 27th Leeds-Lyon Symposium, Elsevier, pp.723-732.
  • [8] Greenwood J.A. and Kauzlarich J.J. (1998): Elastohydrodynamic film thickness for shear-thinning lubricants. - Proc. Instn. Mech. Engrs., vol.212, pp. 179-191.
  • [9] Hirshfelder J.O., Curtiss C.F. and Bird R.B. (1954): Molecular Theory of Gases and Liquids. - New York: Wiley.
  • [10] Kiovpis L.I. and Maginn E.J. (2000): Impact of molecular architecture on the high- pressure rheology of hydrocarbon fluids. - J. Phys. Chem. B., vol.104, pp.7774-7783.
  • [11] Novak J.D. and Winer W.O. (1968): Some measurements of high-pressure lubricant rheology. - ASME, J. Lubr. Techn., vol.90, No.3, pp.580-590.
  • [12] Paluch M., Dendzik Z. and Rzoska S.J. (1999): Scaling of high-pressure viscosity data in low-molecular-weight glass-forming liquids. - Physical Review B, vol.60, No.5, pp.2979-2982.
  • [13] Yasutomi S., Bair S. and Winer W. (1984): An application of a free volume model to lubricant rheology. - Trans. ASME, J. of Trib., vol.106, No.2, pp.291-303.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPZ2-0001-0031
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