Lubricant Additives

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Olefi n Copolymer Viscosity Modifi ers 313


  1. Di Martino, S. and M. Kelchtermans, “Determination of the Composition of Ethylene-Propylene-
    Rubbers Using^13 C-NMR Spectroscopy,” J. Appl. Poly. Sci., 56, 1781–1787, 1995.

  2. Randall, J.C., Polymer Sequence Determinations: Carbon-13 NMR Method, pp. 53–138, Academic
    Press, New York, 1977.

  3. Minick, J., A. Moet, A. Hiltner, E. Baer and S.P. Chum, “Crystallization of Very Low Density Copolymers
    of Ethylene with α-Olefi ns,” J. Appl. Poly. Sci., 58, 1371–1384, 1995.

  4. Rubin, I.D. and M.M. Kapuscinski, “Viscosities of Ethylene-Propylene-Diene Terpolymer Blends in
    Oil,” J. Appl. Poly. Sci., 49, 111, 1993.

  5. Rubin, I.D., “Polymers as Lubricant Viscosity Modifi ers,” Poly. Preprints, Am. Chem. Soc. Div. Poly.
    Chem., 32(2), 84, 1991.

  6. Rubin, I.D., A.J. Stipanovic and A. Sen, “Effect of OCP Structure on Viscosity in Oil,” Soc. Automot.
    Eng. Tech. Paper Ser. No. 902092, 1990.

  7. Kapuscinski M.M., A. Sen and I.D. Rubin, “Solution Viscosity Studies on OCP VI Improvers in Oils,”
    Soc. Automot. Eng. Tech. Paper Ser. No. 892152, 1989.

  8. Kucks, M.J., H.D. Ou-Yang and I.D. Rubin, “Ethylene-Propylene Copolymer Aggregation in Selective
    Hydrocarbon Solvents,” Macromolecules, 26, 3846, 1993.

  9. Rubin, I.D. and A. Sen, “Solution Viscosities of Ethylene-Propylene Copolymers in Oils,” J. Appl. Poly.
    Sci., 40, 523–530, 1990.

  10. Sen, A. and I.D. Rubin, “Molecular Structures and Solution Viscosities of Ethylene-Propylene
    Copolymers,” Macromolecules, 23, 2519, 1990.

  11. LaRiviere, D., A.A. Asfour, A. Hage and J.Z. Gao, “Viscometric Properties of Viscosity Index Improvers
    in Lubricant Base Oil over a Wide Temperature Range. Part I: Group II Base Oil,” Lubr. Sci., 12(2),
    133–143, 2000.

  12. Huggins, M.L., “The viscosity or dilute solutions of Long-chain molecules. IV. Dependence on concen-
    tration” J. Am. Chem. Soc., 64, 2716, 1942.

  13. “Engine Oil Viscosity Classifi cation,” Soc. Automot. Eng. Surface Vehicle Standard No. J300, Rev.
    December 1999.

  14. Rhodes, R.B., “Low-Temperature Compatibility of Engine Lubricants and the Risk of Engine
    Pumpability Failure,” Soc. Automot. Eng. Tech. Paper Ser. No. 932831, 1993.

  15. Papke, B.L., M.A. Dahlstrom, C.T. Mansfi eld, J.C. Dinklage and D.J. Rao, “Deterioration in Used Oil Low
    Temperature Pumpability Properites,” Soc. Automot. Eng. Tech. Paper Ser. No. 2000-01-2942, 2000.

  16. Matko, M.A. and D.W. Florkowski, “Low Temperature Rheological Properties of Aged Crankcase
    Oils,” Soc. Automot. Eng. Tech. Paper Ser. No. 200-01-2943, 2000.

  17. Alexander, D.L., S.A. Cryvoff, J.M. Demko, A.K. Deysarkar, T.W. Beta, R.I. Rhodes, M.F. Smith,
    Jr., R.L. Stambaugh, J.A. Spearot and M.A. Vickare, “High-Temperature, High-Shear (HTHS) Oil
    Viscosity: Measurement and Relationship to Engine Operation,” J.A. Spearot, ed., ASTM Special Tech.
    Pub., STP 1068, 1989.

  18. Bates, T.W., “Oil Rheology and Journal Bearing Performance: A Review,” Lubr. Sci., 2(2) 157–176, 1990.

  19. Wardle, R.W.M., R.C. Coy, P.M. Cann and H.A. Spikes, “An ‘In Lubro’ Study of Viscosity Index
    Improvers in End Contacts,” Lubr. Sci., 3(1), 45–62, 1990.

  20. Alexander, D.L. and S.W. Rein, “Relationship ‘between Engine Oil Bench Shear Stability Tests,” Soc.
    Automot. Eng. Tech. Paper Ser. No. 872047, 1987.

  21. Ba r t z , W. J., “ I n fl uence of Viscosity Index Improver, Molecular Weight, and Base Oil on Thickening,
    Shear Stabilit, and Evaporation Losses of Multigrade Oils,” Lubr. Sci., 12(3), 215–237, 2000.

  22. Laukotka, E.M., “Shear Stability Test for Polymer Containing Lubricating Fluids—Comparison of Test
    Methods and Test Results,” Third International Symposium—The Perform. Evolution of Automotive
    Fuels and Lubricants, Co-ordinating European Council Paper No. 3LT, Paris, April 19–21, 1987.

  23. Selby, T.W., “The Viscsosity Loss Trapezoid – Part 2: Determining General Features of VI Improver
    Molecular Weight Distribution by Parameters of the VLT,” Soc. Automot. Eng. Tech. Paper Ser. No.
    932836, 1993.

  24. Covitch, M.J., “How Polymer Architecture Affects Permanent Viscosity Loss of Multigrade Lubricants,”
    Soc. Automot. Eng. Tech. Paper Ser. No. 982638, 1998.

  25. Kramer, D.C., J.N. Ziemer, M.T. Cheng, C.E. Fry, R.N.Reynolds, B.K. Lok, M.L. Sztenderowicz and
    R.R. Krug, “Infl uence of Group II & III Base Oil Composition on VI and Oxidation Stability,” National
    Lubricating Grease Inst. Publ. No. 9907, Proceedings from 66th NLGI Annual Meeting, Tucson, AZ,
    October 25, 1999.

  26. Rossi, A., “Lube Basestock Manufacturing Technology and Engine Oil Pumpability,” Soc. Automot.
    Eng. Tech. Paper Ser. No. 940098, 1994.


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