Contribution à l`étude des roulements : Modélisation globale des

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Contribution à l`étude des roulements : Modélisation globale des
Bibliography
135
136
[1]
Ai X. & Cheng H.S., “The Influence of Moving Dent on Point EHL Contacts,” STLE Tribology Transactions,
Vol. 37, n°2 (1994), pp.323-335.
[2]
Ai X. & Lee S.C., “Effect of Slide-to-Roll Ratio on Interior Stresses Around a Dent in EHL Contacts,” STLE
Tribology Transactions, Vol. 39, n°4 (1996), pp.881-889.
[3]
Aramaki H., Shoda Y., Morishita Y. & Sawamoto T., “The Performance of Ball Bearings With Silicon Nitride
Ceramic Balls in High Speed Spindles for Machine Tools,” ASME Journal of Tribology, Vol. 110, n°4 (1988),
pp.693-698.
[4]
Averbach B.L. & Bamberger E.N., “Analysis of Bearing Incidents in Aircraft Gas Turbine Mainshaft Bearings,”
STLE Tribology Transactions, Vol. 34, n°2 (1991), pp.241-247.
[5]
Averbach B.L., Van Pelt S.G., Pearson P.K. & Bamberger E.N., “Surface Initiated Spalling Fatigue in M-50 and
M50-Nil Bearings,” Lubrication Engineering, Vol. 47, n°10 (1991), pp.827-843.
[6]
Bair S. & Winer W.O., “Rheological Response of Lubricants in EHD Contacts,” in Elastohydrodynamics and
Related Topics, Proceedings of 5th Leeds-Lyon Symposium on Tribology, Leeds, UK, 1978, Dowson et al. ed.,
Mechanical Engineering Publication Ltd, London (1979), pp.162-169.
[7]
Bair S. & Winer W.O., “Shear Strength Measurements of Lubricants at High Pressure,” ASME Journal of
Lubrication Technology, Vol. 101, Series F, n°3 (1979), pp.251-257.
[8]
Bair S., “An Experimental Verification of the Significance of the Reciprocal Asymptotic Isoviscous Pressure for
EHD Lubricants,” STLE Tribology Transactions, Vol. 36, n°2 (1993), pp.153-162.
[9]
Bardon J.-P., “Bases physiques des conditions de contact thermique imparfait entre milieux en glissement
relatif,” Revue Générale de Thermique, Vol. 33, n°2 (1994), pp.85-91.
[10]
Barnsby R., Harris T.A., Ioannides E., Littman W.E., Losche T., Murakami Y., Needelman W., Nixon H. &
Webster M., “Life Ratings for Modern Rolling Bearings,” ASME Journal of Tribology, (paper n°98-trib-57).
[11]
Barus, C., “Isotherms, Isopiestics, and Isometrics Relative to Viscosity,” Am. J. Sci., Vol. 45 (1893), pp.87-96.
[12]
Bercea I., Nélias D. & Cretu S., “Optimum Initial Axial Compression Due to Preload in an Arrangement of Two
Tapered Roller Bearings - Part 1: Analysis,” Proc. Inst. Mech. Engrs., Journal of Engineering Tribology, Part J,
(à paraître).
[13]
Bercea I., Nélias D. & Cretu S., “Optimum Initial Axial Compression Due to Preload in an Arrangement of Two
Tapered Roller Bearings - Part 2: Application to the Transfer Shaft of an Automobile Automatic Transaxle,”
Proc. Inst. Mech. Engrs., Journal of Engineering Tribology, Part J, (à paraître).
[14]
Bercea M., Bercea I., Nélias D. & Olaru D., “Polyethylene as an Additive for Mineral Oils - Part 1: Influence of
the Polymer Concentration on the Film – Forming Properties in Rolling Bearing,” STLE Tribology Transactions,
Vol. 42, n°4 (1999), pp.851-859.
[15]
Bercea M., Bercea I., Nélias D. & Olaru D., “Tribological Behavior of Mineral Oils Additived with
Polyethylene,” Lubrication Science, Vol. 11, n°3 (1999), pp.247-270.
[16]
Bercea M., Flamand L., Nélias D, Paleu V., Vergne P. & Bercea I., “Comportement tribologique et rhéologique
de lubrifiants additivés en polymère,” Actes des Journées Francophones Internationales 1999 de la STF,
Roulements, Toulouse, 5-7 mai 1999.
[17]
Berthe D. & Flamand L., “Skidding in Roller Bearings, Effect of Lubricant,” in Problems in Bearing
Lubrication, Proceedings of AGARD Symposium, Ottawa, Canada, 1982, Vol. 323.
[18]
Berthe D., Flamand L. & Houpert L., “Rheological Parameters of a Lubricant Under High Speed Conditions,” in
Elastohydrodynamics and Related Topics, Proceedings of 5th Leeds-Lyon Symposium on Tribology, Leeds, UK,
1978, Dowson et al. ed., Mechanical Engineering Publication Ltd, London (1979), pp.188-196.
[19]
Berthe D., Houpert L. & Flamand L., “Thermal Effects in EHD Contacts for Different Rheological Behaviours
of the Lubricant,” in Thermal Effects in Tribology, Proceedings of 6th Leeds-Lyon Symposium on Tribology,
Lyon, France, 1979, Dowson et al. ed., Mechanical Engineering Publication Ltd, London (1980), pp.241-249.
[20]
Berthe D., Michau B., Flamand L. & Godet M., “Effect of Roughness Ratio and Hertz Pressure on Micro-pits
and Spalls in Concentrated Contacts: Theory and Experiments,” in Surface Roughness Effects in Lubrication,
Proceedings of 4th Leeds-Lyon Symposium on Tribology, Lyon, France, 1977, Dowson et al. ed., Butterworths,
London (1978), pp.233-238.
[21]
Blok H., “Seizure Delay Method for Determining the Protection Against Scuffing Afforded by Extreme Pressure
Lubricants,” Journal of the Society of Automotive Engineers, Vol. 44, n°5 (1939), pp.193-210 et 220.
137
[22]
Blok H., “Surface Temperature Under Extreme Pressure Conditions,” Proceedings of the 2nd World Petroleum
Congress, Paris, France, 1937, pp.471-486.
[23]
Blok H., “Theoretical Study of Temperature Rise at Surfaces of Actual Contact Under Oiliness Lubricating Oil
Conditions,” Proceedings of the Institution of Mechanical Engineers, Vol. 2 (1937), pp.222-235.
[24]
Boness R.J., “The Effect of Oil Supply on Cage and Roller Motion in a Lubricated Roller Bearing,” ASME
Journal of Lubrication Technology, Paper 69-LUB 8-73, Vol. 92, Series F, n°1 (1970), pp.39-53.
[25]
Bordi-Boussouar V., “Contribution à l’étude de la formation des dégradations de surface par fatigue de contact
de roulement,” Thèse de Doctorat, Université de Poitiers, 244p. (1998).
[26]
Bordi-Boussouar V., Nélias D., Dorier C. & Villechaise B., “Experimental Study of Rolling Contact Fatigue:
Initiation of a Surface Breaking Crack and Analysis of Its Growth,” Presented at the World Tribology Congress,
London, UK, 8-12 septembre 1997.
[27]
Bou-Saïd B. & Nélias D., “Influence of Ball Bearing Stiffness on Squeeze-Film Behavior Including Fluid Flow
Turbulence and Inertia Effects,” Proceedings of the International Conference on Rotating Machine Dynamics,
pp.414-421, Venise, Italie, 28-30 avril 1992.
[28]
Bower A.F., “The Influence of Crack Face Friction and Trapped Fluid on Surface Initiated Rolling Contact
Fatigue Cracks,” ASME Journal of Tribology, Vol. 110, n°4 (1988), pp.704-711.
[29]
Brown S.R. & Poon S.V., “The Lubrication of the Roller-Rib Contacts of a Radial Cylindrical Roller Bearing
Carrying Thrust Load,” ASLE Transaction, Vol. 26, n°3 (1983), pp.317-324.
[30]
Bujoreanu C., Popinceanu N., Cretu S., Nélias D. & Olaru D., “Etude de la limite de grippage dans les
roulements à billes,” Actes des Journées Francophones Internationales 1999 de la STF, Roulements, Toulouse,
5-7 mai 1999.
[31]
Cann P. M. E., Hamer J. C., Sayles R. S., Spikes H. A. & Ioannides E., “Direct Observation of Particle Entry
and Deformation in Rolling EHD Contact,” in The Third Body Concept: Interpretation of Tribological
Phenomena, Proceedings of the 22nd Leeds-Lyon Symposium on Tribology, Lyon, France, 7-10 septembre 1995,
Dowson et al. ed., Elsevier, Amsterdam, Tribology series, Vol. 31 (1996), pp.127-134.
[32]
Champaud P., “Contribution à l'étude de la fatigue d'un alliage Fe-C-Cr (100Cr6) soumis à un champ de
contraintes de Hertz. Proposition d'un critère d'amorçage,” Thèse de Doctorat, INSA de Lyon, 208p. (1988).
[33]
Champiot Bayard F., “Contribution à l’analyse et à la modélisation de la propagation des fissures courtes dans
les aciers soumis à la fatigue de roulement,” Thèse de Doctorat, INSA de Lyon, 252p. (1997).
[34]
Chantrenne P. & Raynaud M., “A Microscopic Thermal Model for Dry Sliding Contact,” International Journal
of Heat and Mass Transfer, Vol. 40, n°5 (1997), pp.1083-1094.
[35]
Chantrenne P. & Raynaud M., “Détermination numérique de la résistance thermique de contact entre deux
solides en frottement sec à partir d’un modèle thermique microscopique,” Contacts entre solides, frottement,
endommagement, flux thermiques, Paris, Journée d’études du 19 juin 1996, Société Française des Thermiciens.
[36]
Chao K.K., Saba C.S. & Centers P.W., “Effects of Lubricant Borne Solid Debris in Rolling Surface Contacts,”
STLE Tribology Transactions, Vol. 39, n°1 (1996), pp.13-22.
[37]
Chapman J.J., “Angular Contact Ball Bearing Dynamics, an Experimental and Theoretical Investigation,” in
Lubricants and Lubrication, Proceedings of the 21rst Leeds-Lyon Symposium on Tribology, Leeds, UK, 1994,
Dowson et al. ed., Elsevier, Amsterdam, Tribology series, Vol. 30 (1995), pp.435-443.
[38]
Cheng H.S. & Sternlicht B., “A Numerical Solution for the Pressure, Temperature, and Film Thickness Between
Two Infinitely Long, Lubricated Rolling and Sliding Cylinders, Under Heavy Loads,” ASME Journal of Basic
Engineering, Vol. 87, Series D, n°3 (1965), pp.695-707.
[39]
Cheng H.S., “A Numerical Solution of the Elastohydrodynamic Film Thickness in an Elliptical Contact,” ASME
Journal of Lubrication Technology, Vol. 92, Series F, n°1 (1970), pp.155-162.
[40]
Cheng H.S., “A Refined Solution to the Thermal-Elastohydrodynamic Lubrication of Rolling and Sliding
Cylinders,” ASLE Transactions, Vol. 8, n°4 (1965), pp.397-410.
[41]
Cheng W. & Cheng H.S., “Effect of Surface Roughness Orientation on Pitting Resistance of Lubricated
Rollers,” STLE Tribology Transactions, Vol. 38, n°2 (1995), pp.396-402.
[42]
Cheng W., “Experimental and Analytical Investigation on Surface Crack Initiation Under Contact Fatigue,”
Ph.D. Thesis, Northwestern University, Illinois, USA, 208p. (1992).
[43]
Cheng W., Cheng H.S. & Keer L.M., “Experimental Investigation on Rolling/Sliding Contact Fatigue Crack
Initiation with Artificial Defects,” STLE Tribology Transactions, Vol. 37, n°1 (1994), pp.62-73.
138
[44]
Cheng W., Cheng H.S. & Keer L.M., “Longitudinal Crack Initiation Under Pure Rolling Contact Fatigue,” STLE
Tribology Transactions, Vol. 37, n°1 (1994), pp.51-58.
[45]
Cheng W., Cheng H.S., Mura T. & Keer L.M., “Micromechanics Modeling of Crack Initiation Under Contact
Fatigue,” ASME Journal of Tribology, Vol. 116, n°1 (1994), pp.2-8.
[46]
Chittenden R.J., Dowson D. & Taylor C.M., “Power Loss Prediction in Ball Bearing,” in Tribological Design of
Machine Elements, Proceedings of the 15th Leeds-Lyon Symposium on Tribology, Leeds, UK, 1988, Dowson et
al. ed., Elsevier, Amsterdam, Tribology series, Vol. 14 (1989), pp.277-286.
[47]
Chiu Y.P., “On the Stress Field and Surface Deformation in a Half Space with a Cuboidal Zone in which Initial
Strains Are Uniform,” ASME Journal of Applied Mechanics, Vol. 45, n°2 (1978), pp.302-306.
[48]
Chiu Y.P., “The Mechanism of Bearing Surface Fatigue - Experiments and Theories,” STLE Tribology
Transactions, Vol. 40, n°4 (1997), pp.658-666.
[49]
Clarke T.R., Miller G.R., Keer L.M. & Cheng H.S., “The Role of Near-Surface Inclusions in the Pitting of
Gears,” ASLE Transactions, Vol. 28, n°1 (1985), pp.111-116.
[50]
Coe H.H. & Schuller F.T., “Comparison of Predicted and Experimental Performance of Large-Bore Roller
Bearings Operating to 3.0 Million DN,” NASA Technical Paper 1599 (1980), 18p.
[51]
Coe H.H. & Zaretsky E.V., “Predicted and Experimental Performance of Jet-Lubricated 120-millimeter-Bore
Ball Bearings Operating to 2.5 Million DN,” NASA Technical Paper 1196 (1978), 22p.
[52]
Coe H.H., “Predicted and Experimental Performance of Large-Bore High-Speed Ball and Roller Bearings,”
NASA Conference Publication 2210, Advanced Power Transmission Technology (1983), pp.203-220.
[53]
Couhier F., “Influence des rugosités de surface sur les mécanismes de lubrification du contact
élastohydrodynamique cylindre-plan,” Thèse de Doctorat, INSA de Lyon, 171p. (1996).
[54]
Couhier F., Lubrecht A.A., Nélias D. & Flamand L., “Influence of Sliding Speed on the Elastohydrodynamically
Lubricated Film Thickness Shape of Wavy Contacts,” in The Third Body Concept: Interpretation of Tribological
Phenomena, Proceedings of the 22nd Leeds-Lyon Symposium on Tribology, Lyon, France, 7-10 septembre 1995,
Dowson et al. ed., Elsevier, Amsterdam, Tribology series, Vol. 31 (1996), pp.515-526.
[55]
Couhier F., Sottomayor A., Nélias D., Seabra J. & Flamand L., “Influence du comportement rhéologique du
lubrifiant dans un contact EHD rugueux cylindre-plan,” Actes du 12ème Congrès Français de Mécanique,
Strasbourg, France, 04-08 septembre 1995, Vol. 1, pp.237-240.
[56]
Cretu S., Bercea I. & Mitu N., “A Dynamic Analysis of Tapered Roller Bearing under Fully Flooded Conditions,
Part I : Theoretical Formulation,” Wear, Vol. 188, n°1-2 (1995), pp.1-10.
[57]
Cretu S., Prisacaru G., Bercea I. & Mitu N., “The Effect of Rib-Roller End Contact Geometry on Friction
Torque in a Cylindrical Roller Bearings,” 11th International Colloquium on Tribology, Esslingen (Germany),
January 13-15, 1998, pp.617-631.
[58]
Cusano C. & Wedeven L. D., “The Influence of Surface Dents and Grooves on Traction in Sliding EHD Point
Contacts,” ASLE Transactions, Vol. 26, n°3 (1983), pp.306-310.
[59]
Cutiongco E. & Chung Y.W., “Prediction of Scuffing Failure Based on Competitive Kinetics of Oxide
Formation and Removal Application to Lubricated Sliding of AISI 52100 Steel on Steel,” STLE Tribology
Transactions, Vol. 37, n°3 (1994), pp.622-628.
[60]
Dominy J., “The Nature of Slip in High-Speed Axially Loaded Ball Bearings,” Proc. Inst. Mech. Engrs., Vol.
200, n°C5 (1986), pp.359-365.
[61]
Dowson D. & Higginson G.R., “A Numerical Solution to the Elastohydrodynamic Problem,” Journal of
Mechanical Engineering Sciences, Vol. 1 (1959), pp.6-15.
[62]
Dowson D. & Higginson G.R., “Lubrication and Wear: Fundamentals and Application to Design,” Proc. Inst.
Mech. Eng., Vol. 182, Part 3A, (1968), pp.151-167.
[63]
Dowson D. & Higginson G.R., Elastohydrodynamic lubrication, Oxford, Pergamon Press Ltd, 1966, 236p.
[64]
Dumont M.-L., “Etude des endommagements de surface induits par la fatigue de roulement dans les contacts
élastohydrodynamiques pour des aciers M50 et 100Cr6,” Thèse de doctorat, INSA de Lyon, 197p. (1997).
[65]
Dumont M.-L., Campos A., Seabra J., Nélias D. & Flamand L., “Observation et analyse des avaries
superficielles de fatigue dans les contacts élastohydrodynamiques pour des aciers M50 et 100Cr6,” Actes du
12ème Congrès Français de Mécanique, Strasbourg, France, 04-08 septembre 1995, Vol. 1, pp.241-244.
[66]
Dumont M.-L., Nélias D. & Flamand L., “Influence des rugosités et du frottement sur le tenseur des contraintes
dans un massif élastique semi-infini,” Revue Française de Mécanique, n°2 (1994), pp.103-113.
139
[67]
Dussèrre-Telmon G. & Nélias D., “Roulements à billes lubrifiés : Contrôle partagé de la bille entre la bague
intérieure et la bague extérieure,” Revue Française de Mécanique, n°2 (1994), pp.155-165.
[68]
Dwyer-Joyce R.S. & Heymer J., “The Entrainment of Solid Particles into Rolling Elastohydrodynamics
Contacts,” in The Third Body Concept: Interpretation of Tribological Phenomena, Proceedings of the 22nd
Leeds-Lyon Symposium on Tribology, Lyon, France, 7-10 septembre 1995, Dowson et al. ed., Elsevier,
Amsterdam, Tribology series, Vol. 31 (1996), pp.135-140.
[69]
Dwyer-Joyce R.S., “The Effects of Lubricant Contamination on Rolling Bearing Performance,” Ph.D. Thesis,
Imperial College, Londres, UK, 238p. (1992).
[70]
Dwyer-Joyce R.S., Hamer J.C. Sayles R.S. & Ioannides E., “Lubricant Screening for Debris Effects to Improve
Fatigue and Wear Life,” in Wear Particles: From the Cradle to the Grave, Proceedings of the 18th Leeds-Lyon
Symposium on Tribology, Lyon, France, 1991, Dowson et al. ed., Elsevier, Amsterdam, Tribology series, Vol.
21 (1992), pp.57-63.
[71]
Dwyer-Joyce R.S., Hamer J.C., Sayles R.S. & Ioannides E., “Surface Damage Effects Caused by Debris in
Rolling Bearing Lubricants, with an Emphasis on Friable Materials,” in Rolling Element Bearings – towards the
21st Century, Mechanical Engineering Publications for the I. Mech. E, 1990, pp.17-24.
[72]
Dyson A., “Elastohydrodynamic Lubrication of Rough Surfaces with Lay in the Direction of Motion,” in
Surface Roughness Effects in Lubrication, Proceedings of 4th Leeds-Lyon Symposium on Tribology, Lyon,
France, 1977, Dowson et al. ed., Butterworths, London (1978), pp.201-209.
[73]
Dyson A., “Scuffing - A Review, Part 1,” Tribology International, Vol. 8, n°2 (1975), pp.77-87.
[74]
Dyson A., “Scuffing - A Review, Part 2,” Tribology International, Vol. 8, n°3 (1975), pp.117-122.
[75]
Dyson A., “The Failure of Elastohydrodynamic Lubrication of Circumferentially Ground Rough Discs,” Proc.
Inst. Mech. Engrs., Vol. 190, n°1 (1976), pp.52-76.
[76]
Ehret P., Dowson D. & Taylor C.M., “Transient EHL Solutions With Interfacial Slip,” ASME Journal of
Tribology, Vol. 121, n°4 (1999), pp.703-710.
[77]
Elsharkawy A.A. & Hamrock B.J., “Subsurface Stresses in Micro-EHL Line Contacts,” ASME Journal of
Tribology, Vol. 113, n°3 (1991), pp.645-656.
[78]
Enthoven J.C., Cann P.M. & Spikes H.A., “Temperature and Scuffing,” STLE Tribology Transactions, Vol. 36,
n°2 (1993), pp.258-266.
[79]
Fan H., Keer L.M. & Mura T., “Near Surface Crack Initiation Under Contact Fatigue,” STLE Tribology
Transactions, Vol. 35, n°1 (1992), pp.121-127.
[80]
Fantino B., “Influence des défauts de forme dans la lubrification hydrodynamique,” Thèse de 3ème cycle,
Université Claude Bernard de Lyon, 97p. (1973).
[81]
Flamand L. & Nélias D., “Simulation analytique des contacts élastohydrodynamiques. Application aux
roulements,” Actes des Journées Francophones Internationales 1999 de la STF, Roulements, Toulouse, 5-7 mai
1999.
[82]
Flamand L., “La simulation des avaries de surface dans les contact Hertziens,” Thèse de Docteur-Ingénieur,
Université Claude Bernard, Lyon, 194p. (1976).
[83]
Flamand L., Berthe D. & Godet M.., “Simulation of Hertzian Contacts Found in Spur Gears with a High
Performance Disk Machine,” ASME Journal of Mechanical Design, Vol. 103, n°1 (1981), pp.204-209.
[84]
Forster N.H., Schrand J.B. & Gupta P.K., “Viscoelastic Effects in MIL-L-7808-Type Lubricant, Part II:
Experimental Data Correlations,” STLE Tribology Transactions, Vol. 35, n°2 (1992), pp.275-280.
[85]
Frêne J., Nicolas D., Degueurce B., Berthe D. & Godet M., Lubrification hydrodynamique, paliers et butées,
Eyrolles, Paris, 1990, 488p.
[86]
Gecim B. & Winer W.O., “Lubricant Limiting Shear Stress Effect on EHD Film Thickness,” ASME Journal of
Lubrication Technology, Vol. 102, Series F, n°2 (1980), pp.213-219.
[87]
Gentle C.R. & Pasdari M., “Measurement of Cage and Pocket Friction in a Ball Bearing for Use in a Simulation
Program,” ASLE Transactions, Vol. 28, n°4 (1985), pp.536-541.
[88]
Grigorescu R., Nélias D. & Gafitanu M., “Prédiction de la durée de vie d'un roulement prenant en compte son
logement dans un carter de réducteur,” Mécanique Industrielle et Matériaux, Vol. 52, n°2 (1999), pp.55-58.
[89]
Guillien M., Bou-Saïd B. & Nélias D., “Influence de la turbulence et des effets d'inertie sur les caractéristiques
statiques et dynamiques des paliers amortisseurs,” Proceedings of the 8th World Congress on the Theory of
Machines and Mechanisms, Vol. 5, pp.1429-1432, Prague, Tchécoslovaquie, 26-31 août 1991.
140
[90]
Gupta P.K., “Dynamics of Rolling Element Bearings - Parts I, II, III and IV,” ASME Journal of Lubrication
Technology, Vol. 101, Series F, n°3 (1979), pp.293-326.
[91]
Gupta P.K., Advanced Dynamics of Rolling Elements, Springer-Verlag, New-York, 1984, 295p.
[92]
Gupta P.K., Cheng H.S., Zhu D., Forster N.H. & Schrand J.B., “Viscoelastic Effects in MIL-L-7808 Type
Lubricant, Part I: Analytical Formulation,” STLE Tribology Transactions, Vol. 35, n°2 (1992), pp.269-274.
[93]
Gupta P.K., Flamand L., Berthe D. & Godet M., “On the Traction Behaviour of Several Lubricants,” ASME
Journal of Lubrication Technology, Vol. 103, Series F, n°1 (1981), pp.55-64.
[94]
Guy P., Meynaud P., Vincent A., Dudragne G. & Baudry G., “Sub-surface Damage Investigation by High
Frequency Ultrasonic Echography on 100Cr6 Bearing Steel,” Tribology International, Vol. 30, n°4 (1997),
pp.247-259.
[95]
Hadden G.B., Kleckner R.J., Regan M.A. & Sheynin L., “Research Report - User's Manual for Computer
Program AT81Y003 Shaberth. Steady State and Transient Thermal Analysis of a Shaft Bearing System
Including Ball, Cylindrical and Tapered Roller Bearings,” NASA CR-165365 (1981).
[96]
Hairer E. & Wanner G., Solving Ordinary Differential Equations II. Stiff and Differential - Algebraic Problems,
Springer-Verlag, Berlin, New York, 2nd Edition, 1996, 614p.
[97]
Hairer E., Nørsett, S.P. & Wanner G., Solving Ordinary Differential Equations I. Nonstiff Problems, SpringerVerlag, Berlin, New York, 2nd Edition, 1993, 528p.
[98]
Hamer J.C., Sayles R.S. & Ioannides E., “Particle Deformation and Counterface Damage When Relatively Soft
Particles are Squashed Between Hard Anvils,” STLE Tribology Transactions, Vol. 32, n°3 (1989), pp.281-288.
[99]
Hamrock B.J. & Dowson D., “Isothermal Elastohydrodynamic Lubrication of Point Contacts, Part IV,” ASME
Journal of Lubrication Technology, Vol. 99, Series F, n°1 (1977), pp.15-23.
[100] Hamrock B.J. & Dowson D., “Isothermal Elastohydrodynamic Lubrication of Point Contacts, Part I,” ASME
Journal of Lubrication Technology, Vol. 98, Series F, n°2 (1976), pp.223-229.
[101] Hamrock B.J. & Dowson D., “Isothermal Elastohydrodynamic Lubrication of Point Contacts, Part II,” ASME
Journal of Lubrication Technology, Vol. 98, Series F, n°3 (1976), pp.375-383.
[102] Hamrock B.J. & Dowson D., “Isothermal Elastohydrodynamic Lubrication of Point Contact, Part III-Fully
Flooded Results,” ASME Journal of Lubrication Technology, Vol. 99, Series F, n°2 (1977), pp.264-276.
[103] Hamrock B.J. & Dowson D., Ball Bearing Lubrication: The Elastohydrodynamics of Elliptical Contacts, John
Wiley and Sons, New York, 1981, 386p.
[104] Harris T.A., “An Analytical Method to Predict Skidding in Thrust-Loaded, Angular Contact Ball Bearings,”
ASME Journal of Lubrication Technology, Vol. 93, Series F, n°1 (1971), pp.17-24.
[105] Harris T.A., Kotzalas M.N. & Yu W.K., “On the Causes and Effects of Roller Skewing in Cylindrical Roller
Bearings,” STLE Tribology Transactions, Vol. 41, n°4 (1998), pp.572-578.
[106] Harris T.A., Rolling Bearing Analysis, Wiley Inter-sciences, New York, 3rd Edition, 1991, 1013p.
[107] Head A.K., “Edge Dislocations in Inhomogeneous Media,” Proceedings of the Physical Society, Section B 66,
Part 9 (1953), pp.793-801.
[108] Hertz H., “Uber die berührung fester elastischer körper,” J. reine und angew. Math., Vol. 92 (1882), pp.156-171.
[109] Houpert L., “Contribution à l’étude du frottement dans un contact élastohydrodynamique,” Thèse de DocteurIngénieur, INSA de Lyon, 265p. (1980).
[110] Houpert L., “Fast Numerical Calculations of EHD Sliding Traction Forces; Application to Rolling Bearings,”
ASME Journal of Tribology, Vol. 107, n°2 (1985), pp.234-240.
[111] Houpert L., “New Results of Traction Force Calculations in Elastohydrodynamic Contacts,” ASME Journal of
Tribology, Vol. 107, n°2 (1985), pp.241-248.
[112] Houpert L., Flamand L. & Berthe D., “Rheological and Thermal Effects in a Lubricated EHD Contact,” ASME
Journal of Lubrication Technology, Vol. 103, Series F, n°4 (1981), pp.526-533.
[113] Hsu C.H. & Lee R.T., “An Efficient Algorithm for Thermal Elastohydrodynamic Lubrication Under Rolling /
Sliding Line Contacts,” Journal of Vibration, Acoustics, Stress, and Reliability in Design, Vol. 116, n°4 (1994),
pp.762-768.
[114] Ioannides E. & Harris T.A., “A New Fatigue Life Model for Rolling Bearings,” ASME Journal of Tribology,
Vol. 107, n°3 (1985), pp.367-378.
141
[115] Ioannides E., Beghini E., Jacobson B., Bergling G. & Wuttkowski J.G., “Cleanliness and Its Importance to
Bearing Performance,” Lubrication Engineering, Vol. 49, n°9 (1993), pp.657-663.
[116] Johnson K.L. & Tevaarwerk J.L., “Shear Behaviour of Elastohydrodynamic Oil Films,” Proceedings of the
Royal Society of London, Series A, Vol. 356 (1977), pp.215-236.
[117] Jones A.B., “Ball Motion and Sliding Friction in Ball Bearings,” ASME Journal of Basic Engineering. Vol. 81,
Series D, n°1 (1969), pp.1-12.
[118] Kaneta M. & Murakami Y., “Effects of Oil Hydraulic Pressure on Surface Crack Growth in Rolling/Sliding
Contact,” Tribology International, Vol. 20, n°4 (1987), pp.210-217.
[119] Kaneta M. & Murakami Y., “Propagation of Semi-Elliptical Surface Cracks in Lubricated Rolling/Sliding
Elliptical Contacts,” ASME Journal of Tribology, Vol. 113, n°2 (1991), pp.270-275.
[120] Kaneta M., Kanada T. & Nishikawa H., “Optical Interferometric Observations of the Effects of a Moving Dent
Point Contact EHL,” in Elastohydrodynamics-’96 : Fundamentals and Applications in Lubrication and Traction,
Proceedings of the 23rd Leeds-Lyon Symposium on Tribology, Leeds, UK, 1996, Dowson et al. ed., Elsevier,
Amsterdam, Tribology series, Vol. 32 (1997), pp.69-79.
[121] Kaneta M., Yatsuzuka H. & Murakami Y., “Mechanism of Crack Growth in Lubricated Rolling/Sliding
Contact,” ASLE Transactions, Vol. 28, n°3 (1985), pp.407-414.
[122] Kawamura H. & Touma K., “Motion of Unbalanced Balls in High-Speed Angular Contact Ball Bearings,”
ASME Journal of Tribology, Vol. 112, n°1 (1990), pp.105-110.
[123] Keer L.M. & Bryant M.D., “A Pitting Model of Contact Fatigue,” ASME Journal of Lubrication Technology,
Vol. 105, Series F, n°2 (1983), pp.198-205.
[124] Kleckner R.J., Pirvics J. & Castelli V., “High-Speed Cylindrical Rolling Element Bearing Analysis "CYBEAN"
- Analytic Formulation,” ASME Journal of Lubrication Technology, Vol. 102, Series F, n°3 (1980), pp.380-388,
discussion, pp.388-390.
[125] Ko C.N. & Ioannides E., “Debris Denting – The Associated Residual Stresses and Their Effect on the Fatigue
Life of Rolling Bearing : An FEM Analysis,” in Tribological Design of Machine Elements, Proceedings of the
15th Leeds-Lyon Symposium on Tribology, Leeds, UK, 1988, Dowson et al. ed., Elsevier, Amsterdam,
Tribology series, Vol. 14 (1989), pp.199-207.
[126] Korrenn H., “The Axial Load Carrying Capacity of Radial Cylindrical Roller Bearings,” ASME Journal of
Lubrication Technology, Vol. 92, Series F, n°1 (1970), pp.129-137.
[127] Krzeminski-Freda H. & Warda B., “The Effect of Roller End-Flange Contact Shape Upon Frictional Losses and
Axial Load of the Radial Cylindrical Roller Bearing,” in Tribological Design of Machine Elements, Proceedings
of the 15th Leeds-Lyon Symposium on Tribology, Leeds, UK, 1988, Dowson et al. ed., Elsevier, Amsterdam,
Tribology series, Vol. 14 (1989), pp.287-295.
[128] Lamagnère P., “Etude et modélisation de l'amorçage des fissures de fatigue de roulement au voisinage des
microhétérogénéités dans l’acier M50,” Thèse de Doctorat, INSA de Lyon, 181p. (1996).
[129] Lamagnère P., Fougères R., Lormand G., Girodin D., Dudragne G., Vergne F. & Vincent A., “A Physically
Based Model for Endurance Limit of Bearing Steels,” ASME Journal of Tribology, Vol. 120, n°3 (1998),
pp.421-426.
[130] Laraqi N., “Phénomène de constriction thermique dans les contacts glissants,” International Journal of Heat and
Mass Transfer, Vol. 39, n°17 (1996), pp.3717-3724.
[131] Laraqi N., “Températures de contact et coefficient de partage de flux généré par frottement sec entre deux
solides. Approche nouvelle de la génération de flux,” International Journal of Heat and Mass Transfer, Vol. 35,
n°11 (1992), pp.3131-3139.
[132] Lee S.C. & Cheng H.S., “Experimental Validation of Critical Temperature-Pressure Theory of Scuffing,” STLE
Tribology Transactions, Vol. 38, n°3 (1995), pp.738-742.
[133] Lee S.C. & Cheng H.S., “Scuffing Theory Modeling and Experimental Correlations,” ASME Journal of
Tribology, Vol. 113, n°2 (1991), pp.327-334.
[134] Legrand E. & Robbe-Valloire F., “Analyse des efforts tangentiels dans les contacts billes - bagues non lubrifiés,”
Revue Française de Mécanique, n°2 (1994), pp.93-102.
[135] Li M. & Wen S., “The Study of Roller End and Guiding Shoulder Construction of Roller Bearings,” in
Tribological Design of Machine Elements, Proceedings of the 15th Leeds-Lyon Symposium on Tribology, Leeds,
UK, 1988, Dowson et al. ed., Elsevier, Amsterdam, Tribology series, Vol. 14 (1989), pp.297-301.
142
[136] Littmann W.E. & Widner R.L., “Propagation of Contact Fatigue from Surface and Subsurface Origins,” ASME
Journal of Basic Engineering, Vol. 88, Series D, n°3 (1966), pp.624-636.
[137] Littmann W.E., “The Mechanism of Contact Fatigue,” in Interdisciplinary Approach to the Lubrication of
Concentrated Contacts, NASA SP-237, 1970, pp.309-377.
[138] Loewenthal S.H. & Moyer D.W., “Filtration Effects on Ball Bearing Life and Condition in a Contaminated
Lubricant,” ASME Journal of Lubrication Technology, Vol. 101, Series F, n°2 (1979), pp.171-179.
[139] Loewenthal S.H., Moyer D.W. & Needelman W.M., “Effects of Ultraclean and Centrifugal Filtration on
Rolling-Element Bearing Life,” ASME Journal of Lubrication Technology, Vol. 104, Series F, n°3 (1982),
pp.283-292.
[140] Lormand G., Champiot F., Vincent A., Fougères R., Girodin D. & Dudragne G., “Simulation numérique de la
propagation des fissures de fatigue de roulement amorcées en sous-couche dans l’acier 80MoCrV42,” Actes des
17èmes Journées de Printemps, Société Française de Métallurgie et de Matériaux (SF2M), Fatigue de Contact,
Paris, France, 27-28 mai 1998.
[141] Lorösch H.K., “Research on Longer Life for Rolling-Element Bearings,” Lubrication Engineering, Vol. 41, n°1
(1985), pp.37-43.
[142] Lubrecht A.A., Dwyer-Joyce R.S. & Ioannides E., “Analysis of the Influence of Indentations on Contact Life,”
in Wear Particles: From the Cradle to the Grave, Proceedings of the 18th Leeds-Lyon Symposium on Tribology,
Lyon, France, 1991, Dowson et al. ed., Elsevier, Amsterdam, Tribology series, Vol. 21 (1992), pp.173-181.
[143] Lubrecht A.A., Ten Napel W.E. & Bosma R., “The Influence of Longitudinal and Transverse Roughness on the
Elastohydrodynamic Lubrication of Circular Contacts,” ASME Journal of Tribology, Vol. 110, n°3 (1988),
pp.421-426.
[144] Lubrecht A.A., Venner C.H., Lane S. Jacobson B. & Ioannides E., “Surface Damage – Comparison of
Theoretical and Experimental Endurance Lives of Rolling Bearings,” Proceedings of the International Tribology
Conference, Japan, 1990, pp.185-190.
[145] Lundberg G. & Palmgren A., “Dynamic Capacity of Rolling Bearings,” Acta Polytechnica, Mechanical
Engineering Series 1, Royal Swedish Academy of Engineering Sciences, n°3 (1947), pp.1-56.
[146] Martin J.A. & Eberhardt A.D., “Identification of Potential Failure Nuclei in Rolling Contact Fatigue,” ASME
Journal of Basic Engineering, Vol. 89, Series D, n°4 (1967), pp.932-942.
[147] Mayeur C., “Modélisation du contact rugueux élastoplastique,” Thèse de doctorat, INSA de Lyon, 179p (1995).
[148] Moreira de Freitas M. & François D., “Formation de phase blanche en fatigue de roulement,” Scripta
Metallurgica, Vol. 17 (1983), pp.683-686.
[149] Mura T. & Nakasone Y., “A Theory of Fatigue Crack Initiation in Solids,” ASME Journal of Applied Mechanics,
Vol. 57, n°1 (1990), pp.1-6.
[150] Mura T., Micromechanics of Defects in Solids,” Kluver Academic Publishers, Dordrecht, 2nd Revised Edition,
1987, 587p.
[151] Murakami Y., Kaneta M. & Yatsuzuka H., “Analysis of Surface Crack Propagation in Lubricated Rolling
Contact,” ASLE Transactions, Vol. 28, n°1 (1985), pp.60-68.
[152] Murakami Y., Sakae C. & Ichimaru K., “Three-Dimensional Fracture Mechanics Analysis of Pit Formation
Mechanism Under Lubricated Rolling-Sliding Contact Loading,” STLE Tribology Transactions, Vol. 37, n°3
(1994), pp.445-454.
[153] Murch L.E. & Wilson W.R., “A Thermal Elastohydrodynamic Inlet Zone Analysis,” ASME Journal of
Lubrication Technology, Vol. 97, Series F, n°2 (1975), pp.212-216.
[154] Needelman W., “Filtration for Wear Control”, chapitre dans ASME Wear Control Handbook, ASME Press,
New-York, 1980, pp.507-582.
[155] Needelman W., “Filtration”, chapitre dans STLE/CRC Handbook of Lubrication & Tribology, 1994, pp.71-87.
[156] Nélias D. & Ville F., “Detrimental Effects of Dents on Rolling Contact Fatigue,” ASME Journal of Tribology,
(paper n°99-Trib-17), Vol. 122, n°1 (2000), pp.55-64.
[157] Nélias D. & Yoshioka T., “Location of an Acoustic Emission Source in Radially Loaded Deep Groove Ball
Bearing,” Proc. Inst. Mech. Engrs., Journal of Engineering Tribology, Vol. 212, n°J1 (1998), pp.33-45.
[158] Nélias D., “Etude du glissement dans les roulements à billes grande vitesse de turbomachine. Influence de la
pollution du lubrifiant,” Thèse de doctorat, INSA de Lyon, 292p. (1989).
143
[159] Nélias D., “Etude expérimentale et théorique du micro-grippage dans les contacts élastohydrodynamiques,”
Revue Générale de Thermique, Vol. 36, n°1 (1997), pp.26-39.
[160] Nélias D., “Influence de la lubrification sur la puissance dissipée dans les roulements à rouleaux cylindriques,”
Revue Française de Mécanique, n°2 (1994), pp.143-154.
[161] Nélias D., Bercea I. & Cretu S., “Optimisation de la précharge entre deux roulements à rouleaux coniques
montés sur un arbre de transmission automobile,” Actes du 4ème Congrès Mondial des Engrenages et des
Transmissions de Puissance, Paris, France, 16-18 mars 1999, Vol. 2 (1999), pp.1205-1216.
[162] Nélias D., Dumont M.-L., Champiot F., Girodin D., Lormand G., Vincent A., Fougères R. & Flamand L.,
“Influence des inclusions, de l'état de surface et des conditions de fonctionnement sur la fatigue des aciers M50
et 100Cr6 dans les contacts ponctuels lubrifiés,” Actes des 17èmes Journées de Printemps, Société Française de
Métallurgie et de Matériaux (SF2M), Fatigue de Contact, Paris, France, 27-28 mai 1998.
[163] Nélias D., Dumont M.-L., Champiot F., Vincent A., Girodin D., Fougères R. & Flamand L., “Role of Inclusions,
Surface Roughness and Operating Conditions on Rolling Contact Fatigue,” ASME Journal of Tribology, (paper
n°98-Trib-23), Vol. 121, n°2 (1999), pp.240-251.
[164] Nélias D., Dumont M.-L., Couhier F., Dudragne G. & Flamand L., “Experimental and Theoretical Investigation
on Rolling Contact Fatigue of 52100 and M50 Steels under EHL or Micro-EHL Conditions,” ASME Journal of
Tribology, (paper n°97-Trib-7), Vol. 120, n°2 (1998), pp.184-190.
[165] Nélias D., in Advances in Techniques for Engine Applications, Edited by Dunker R., John Wiley & Sons,
European Commission Aeronautics Research Series, 1995, pp.38-48, 146p.
[166] Nélias D., Legrand E., Vergne P., Ville F., Flamand L. & Mondier J.-B., “Rhéologie et tribologie de lubrifiants
fluides pour des roulements dans des applications spatiales,” Actes des Journées Francophones Internationales
1999 de la STF, Roulements, Toulouse, 5-7 mai 1999.
[167] Nélias D., Nasarre F. & Flamand L., “Scuffing at Very High Speed and Low Normal Load: an Experimental
Investigation,” Proceedings of the International Tribology Conference, Yokohama, Japon, 29 octobre – 02
novembre 1995, Vol. 1 (1996), pp.187-192.
[168] Nélias D., Sainsot P. & Bou-Saïd B., “Glissement dans les roulements à billes grande vitesse sous charges axiale
et radiale combinées,” Proceedings of the 8th World Congress on the Theory of Machines and Mechanisms, Vol.
5, pp.1441-1444, Prague, Tchécoslovaquie, 26-31 août 1991.
[169] Nélias D., Sainsot P. & Flamand L., “ Deformation of a Particular Metallic Contaminant and Role on Surface
Damage in High-Speed Ball Bearings,” In Wear Particles: From the Cradle to the Grave, Proceedings of the 18th
Leeds-Lyon Symposium on Tribology, Lyon, France, 4-7 septembre 1991, Dowson et al. ed., Elsevier,
Amsterdam, Tribology series, Vol. 21 (1992), pp.145-151.
[170] Nélias D., Sainsot P. & Flamand L., “Power Loss of Gearbox Ball Bearing Under Axial and Radial Loads,”
STLE Tribology Transactions, Vol. 37, n°1 (1994), pp.83-90.
[171] Nélias D., Sainsot P. & Flamand L., “Puissance dissipée dans un roulement à billes de réducteur sous charges
axiale et radiale combinées,” Proceedings of the 3rd World Congress on Gearing and Power Transmissions,
Paris, France, 12-14 février 1992, Vol. 1, pp.307-318.
[172] Nélias D., Seabra J., Flamand L. & Dalmaz G., “Power Loss Prediction in High-Speed Roller Bearings,” In
Dissipative Processes in Tribology, Proceedings of the 20th Leeds-Lyon Symposium on Tribology, Lyon,
France, 7-10 septembre 1993, Dowson et al. ed., Elsevier, Amsterdam, Tribology series, Vol. 27 (1994), pp.465478.
[173] Nélias D., Vincent A., Plona D., Girodin D., Flamand L., Fougères R., Dussèrre-Telmon G. & Dudragne G.,
“Modèles de fatigue de contact et notion de limite d’endurance en relation avec les endommagements observés
dans les roulements aéronautiques,” Actes des Journées Francophones Internationales 1999 de la STF,
Roulements, Toulouse, 5-7 mai 1999.
[174] Nijenbanning G., Venner C.H. & Moes H., “Film Thickness in Elastohydrodynamically Lubricated Elliptic
Contacts,” Wear, Vol. 176 (1994), pp.217-229.
[175] Paleu V., Vergne P., Nélias D. & Bercea M., “Rheological Behavior of Mineral Oils Additived with
Polyethylene,” Proceedings of the 3rd International Conference on Tribology “Balkantrib ‘99”, Sinaia,
Roumanie, 2-4 juin 1999, pp.143-150.
[176] Palmgren A., Ball and Roller Bearing Engineering, SKF Industries Inc., Burbank, 3rd Edition, 1959, 264p.
[177] Parker R.J., “Comparison of Predicted and Experimental Thermal Performance of Angular Contact Ball
Bearings,” NASA Technical Paper 2275 (1984), 16p.
144
[178] Paty G. & Nélias D., “Prediction of High-Speed Bearing Heat Generation in Order to Reduce Lubrication in an
Effective Manner,” Proceedings of the 2nd Community Aeronautics RTD Conference, Naples, Italie, 4-5 octobre
1993, pp.231-239.
[179] Pirvics J. & Kleckner R.J., “Prediction of Ball and Roller Bearing Thermal and Kinematic Performance by
Computer Analysis,” NASA Conference Publication 2210, Advanced Power Transmission Technology (1983),
pp.185-202.
[180] Poplawski J.V. & Mauriello A., “Skidding in Lightly Loaded, High-Speed Ball Thrust Bearings,” ASME Journal
of Lubrication Technology, Paper 69-LUB-20, presented at the Lubrication Symposium, San Francisco, June 1719, 1969, pp.107-113.
[181] Poplawski J.V., “Slip and Cage Forces in a High-Speed Roller Bearing,” ASME Journal of Lubrication
Technology, Paper 71-LUB-17, Vol. 94, Series F, n°2 (1972), pp.143-152.
[182] Prat P., Vergne P. & Sicre J., “New Results in High Pressure and Low Temperature Rheology of Liquid
Lubricants for Spatial Applications,” ASME Journal of Tribology, Vol. 116, n°3 (1994), pp.629-634.
[183] Present D.L., Newman F.M., Tyler J.C. & Cuellar J.P., “Advanced Chemical Characterization and Physical
Properties of Eleven Lubricants,” NASA CR-168187 (1983).
[184] Prisacaru G., Bercea I., Mitu N. & Cretu S., “The Analysis of the Quasi-Dynamic Equilibrium in Cylindrical
Roller Bearing,” Proceedings of the 6th Nordic Symposium on Tribology NORDTRIB’94, Uppsala (Sweden),
Vol. 3 (1994), pp.721-731.
[185] Prisacaru G., Cretu S., Nélias D. & Slevoaca G., “Roulements à rouleaux cylindriques à capacité de charge
axiale,” Actes des Journées Francophones Internationales 1999 de la STF, Roulements, Toulouse, 5-7 mai 1999.
[186] Qiu L. & Cheng H.S., “Temperature Rise Simulation of Three-Dimensional Rough Surfaces in Mixed
Lubricated Contact,” ASME Journal of Tribology, Vol. 120, n°2 (1998), pp.310-318
[187] Ree T. & Eyring H., “Theory of Non-Newtonian Flow. Part I- Solid Plastic System,” Journal of Applied
Physique, Vol. 26 (1955), pp.793-800.
[188] Ree T. & Eyring H., “Theory of Non-Newtonian Flow. Part II- Solution System of High Polymers,” Journal of
Applied Physique, Vol. 26 (1955), pp.800-809 (Part II).
[189] Reviron O., Nélias D. & Legrand E., “Modélisation dynamique des roulements à rouleaux cylindriques :
évaluation des efforts rouleaux/cage en vue d’optimiser le dimensionnement des cages,” Actes des Journées
Francophones Internationales 1999 de la STF, Roulements, Toulouse, 5-7 mai 1999.
[190] Reynaud P. & Vergne P., “High Pressure Behavior of Space Liquid Lubricants,” Proceedings of the 8th
International Colloquium on Tribology “Tribology 2000,” Technische Akademie Esslingen, January 14-16,
1992, 2, paper 19.12.
[191] Rizvi S.Q.A., “Lubricant Additives and Their Functions,” in ASM Handbook, Vol. 18, Friction, Lubrication and
Wear Technology, Henry S.D. Ed., ASM International, 2nd Ed., 1995, pp.98-112.
[192] Roelands C.J.A., “Correlation Aspects of Viscosity-Temperature-Relationship of Lubricating Oils,” Ph.D.
Thesis, Delft University of Technology, The Netherlands (1966).
[193] Rumbarger J.H., Filetti E.G. & Gubernick D., “Gas Turbine Engine Mainshaft Roller Bearing-System Analysis,”
ASME Journal of Lubrication Technology, Vol. 95, Series F, n°4 (1973), pp.401-416.
[194] Salti B. & Laraqi N., “3-D numerical modeling of heat transfer between two sliding bodies: temperature and
thermal contact resistance,” International Journal of Heat and Mass Transfer, Vol. 42, n°13 (1999), pp.23632374
[195] Sanchette-Gosset L., “Contribution à l'analyse et à la modélisation de l'amorçage des fissures dans l'acier 100Cr6
soumis à la fatigue de roulement,” Thèse de Doctorat, INSA de Lyon, 203p. (1993).
[196] Sayles R. S. & Ioannides E., “Debris Damage in Rolling Bearings and Its Effects on Fatigue Life,” ASME
Journal of Tribology, Vol. 110, n°1 (1988), pp.26-31.
[197] Schlichting H., Boundary Layer Theory, Mc Graw-Hill, New York, 6th Edition, 1968, 747p. (pp.15-19, 93-99,
606-608).
[198] Schrader S.M. & Pfaffenberger E.E., “Performance of Hybrid Ball Bearings in Oil and Jet Fuel,” STLE
Tribology Transactions, Vol. 35, n°3 (1992), pp.389-396.
[199] Schrader S.M., “Performance of a Hybrid Cylindrical Roller Bearing,” Lubrication Engineering, Vol. 48, n°8
(1992), pp.665-672.
145
[200] Schuller F.T. & Signer H.R., “Performance of Jet- and Inner-Ring-Lubricated 35 Millimeter Bore Ball Bearings
Operating to 2.5 Million DN,” NASA Technical Paper 1808 (1981), 15p.
[201] Schuller F.T., Pinel S.I. & Signer H.R., “Effect of Cage Design on Characteristics of High-Speed Jet Lubricated
35 millimeter Bore Ball Bearing (Turbojet Engines),” NASA Technical Paper 1732 (1980), 13p.
[202] Schuller F.T., Pinel S.I. & Signer H.R., “Effect of two Inner-Ring Oil-Flow Distribution Schemes on the
Operating Characteristics of a 35 millimeter Bore Ball Bearing Operating to 2.5 million DN,” NASA,
Washington, D.C., NASA Technical Paper 2404 (1985), 14p.
[203] Schuller F.T., Pinel S.I. & Signer H.R., “Operating Characteristics of High-Speed Jet Lubricated 35 millimeter
Bore Ball Bearing with a Single-Outer-Land-guided-Cage,”NASA Technical Paper 1657 (1980), 16p.
[204] Sicre J., Berthier Y., Flamand L., Reynaud P., Vergne P. & Godet M., “Rheological and tribological
characterization of six wet lubricants for space,” Journal of Synthetic Lubrication, Leaf Coppin Publishers, Vol.
11, n°1 (1994), pp.35-44.
[205] Soda N. & Yamamoto T., “Effect of Tangential Traction and Roughness on Crack Initiation/Propagation During
Rolling Contact,” ASLE Transactions, Vol. 25, n°2 (1982), pp.198-206.
[206] Stacke L.-E., Fritzson D. & Nordling P., “ BEAST – a Rolling Bearing Simulation Tool,” Proc. Inst. Mech.
Engrs., Journal of Multi-body Dynamics, (à paraître).
[207] Sugimura J., Jones W.R. & Spikes H.A., “EHD Film Thickness in Non-Steady State Contacts,” ASME Journal
of Tribology, Vol. 120, n°3 (1998), pp.442-452.
[208] Takeda M. & Yoshioka T., “Observation of Rolling Contact Fatigue Cracks Using Acoustic Emission
Technique,” Proceedings of the International Tribology Conference, Yokohama, Japon, 29 octobre – 02
novembre, 1995, Vol. 3 (1996), pp.1345-1350.
[209] Tallian T.E., “Prediction of Rolling Contact Fatigue Life in Contaminated Lubricant: Part I-Mathematical
Model,” ASME Journal of Lubrication Technology, Vol. 98, Series F, n°2 (1976), pp.251-257.
[210] Tallian T.E., “Prediction of Rolling Contact Fatigue Life in Contaminated Lubricant: Part II-Experimental,”
ASME Journal of Lubrication Technology, Vol. 98, Series F, n°3 (1976), pp.384-392.
[211] Tallian T.E., discussion of paper by Boness (R.J.). “The Effect of Oil Supply on Cage and Roller Motion in a
Lubricated Roller Bearing". ASME Journal of Lubrication Technology, Vol. 92, Series F, n°1 (1970), pp.39-53
[212] Tallian T.E., Failure Atlas for Hertz Contact Machine Elements, ASME Press, New-York, 1992, 404p.
[213] Tanaka K. & Mura T., “A Theory of Fatigue Crack Initiation at Inclusions,” Metallurgical Transactions, Vol.
13, Series A (1982), pp.117-123.
[214] Teppe S., Fantino B., Nélias D., Fendeleur M. & Guilbaud S., “Optimisation du comportement tribologique de la
distribution d’un moteur thermique à quatre soupapes par cylindre,” Actes du 4ème Congrès de Mécanique,
Mohammadia, Maroc, 13-16 avril 1999, Vol. 1 (1999), pp.209-210.
[215] Tevaarwerk J.L. & Johnson K.L., “The Influence of Fluid Rheology on the Performance of Traction Drives,”
ASME Journal of Lubrication Technology, Vol. 101, Series F, n°3 (1979), pp.266-274.
[216] Tian X. & Kennedy F.E., “Maximum and Average Flash Temperatures in Sliding Contacts,” ASME Journal of
Tribology, Vol. 116, n°1 (1994), pp.167-174.
[217] Touma K., Kawamura H. & Kawakita K., “Ball Motion in High-Speed Angular Contact Ball Bearings,”
Proceedings of the JSLE International Tribology Conference, Tokyo, Japan, July 8-10, 1985, pp.585-590.
[218] Venner C.H. & Lubrecht A.A., “Numerical Simulation of a Transverse Ridge in a Circular EHL Contact Under
Rolling/Sliding,” ASME Journal of Tribology, Vol. 116, n°4 (1994), pp.751-761.
[219] Venner C.H. & Lubrecht A.A., “Transient Analysis of Surface Features in an EHL Line Contact in the Case of
Sliding,” ASME Journal of Tribology, Vol. 116, n°2 (1994), pp.186-193.
[220] Vergne P. & Nélias D., “Tribological and Rheological Properties of a MIL-L-23699 Lubricant,” Proceedings of
the International Tribology Conference, Yokohama, Japon, 29 octobre – 02 novembre 1995, Vol. 2 (1996),
pp.691-696.
[221] Vergne P. & Roche G., “Measurement of Physical Properties in Liquids under High Pressure by Ultrasonic
Technique,” Proceedings of the 28 th Annual Meeting of the EHPRG, Talence, France, 8-13 Juillet 1990.
[222] Vergne P., “New High-Pressure Viscosity Measurements on Di(2-ethylhexyl) Sebacate and Comparisons with
Previous Data,” High Temperatures-High Pressures, Vol. 22 (1990), pp.613-621.
[223] Ville F. & Nélias D., “An Experimental Study on the Concentration and Shape of Dents Caused by Spherical
Metallic Particles in EHL Contacts,” STLE Tribology Transactions, Vol. 42, n°1 (1999), pp.231-240.
146
[224] Ville F. & Nélias D., “Early Fatigue Failure Due to Dents in EHL Contacts,” STLE Tribology Transactions, Vol.
42, n°4 (1999), pp.795-800.
[225] Ville F. & Nélias D., “Effet de la pollution solide des lubrifiants sur la fatigue de roulement,” Actes des Journées
Francophones Internationales 1999 de la STF, Roulements, Toulouse, 5-7 mai 1999.
[226] Ville F. & Nélias D., “Influence of the Nature and Size of Solid Particles on the Indentation Features in EHL
Contacts,” In Tribology for Energy Conservation, Proceedings of the 24th Leeds-Lyon Symposium on Tribology,
London, UK, 1997, Dowson et al. ed., Elsevier, Amsterdam, Tribology series, Vol. 34 (1998), pp.399-410.
[227] Ville F. & Nélias D., “Pollution solide des lubrifiants,” Actes des Journées Francophones de Tribologie
Corrosion (JFTC'98), Ecole Centrale de Lyon, Ecully, 3-4 juin 1998.
[228] Ville F. & Nélias D., “Rôle de la pollution solide des lubrifiants sur le processus d'indentation et la fatigue des
surfaces,” Actes des 17èmes Journées de Printemps, Société Française de Métallurgie et de Matériaux (SF2M),
Fatigue de Contact, Paris, France, 27-28 mai 1998.
[229] Ville F., “Pollution solide des lubrifiants, indentation et fatigue des surfaces,” Thèse de doctorat, INSA de Lyon,
163p. (1998).
[230] Vincent A., Lamagnère P., Lormand G., Fougères R., Girodin D. & Dudragne G., “Approche physique de la
limite d’endurance des aciers à roulement,” Actes des 17èmes Journées de Printemps, Société Française de
Métallurgie et de Matériaux (SF2M), Fatigue de Contact, Paris, France, 27-28 mai 1998.
[231] Vincent A., Lormand G., Fougères R., Girodin D. & Dudragne G., “Différents concepts pour la limite
d’endurance des aciers sollicités en fatigue de roulement,” Actes des Journées Francophones Internationales
1999 de la STF, Roulements, Toulouse, 5-7 mai 1999.
[232] Vincent A., Lormand G., Fougères R., Gosset L., Girodin D. & Dudragne G., “Modelling Shape and Size of
White Etching Areas Formed Around Inclusions in Bearing Steels under Rolling Contact Fatigue,” Proceedings
of the 2nd International Symposium on Bearing Steels, Arles, France, June 6-9, 1995.
[233] Warda B., “Modelling of the Pressure Distributions Between Roller End–Flange Contacts of NJ Type of
Cylindrical Roller Bearing,” Mechanika, Vol. 9, n°2 (1990), pp.121-129.
[234] Way S., “Pitting Due to Rolling Contact,” ASME Journal of Applied Mechanics, Vol. 2 (1935), pp.A49-A58.
[235] Wedeven L.D. & Cusano C., “Elastohydrodynamic Film Thickness Measurements of Artificially Produced
Surface Dents and Grooves,” ASLE Transactions, Vol. 22, n°4 (1979), pp.369-381.
[236] Wedeven L.D., “Influence of Debris Dent on EHD Lubrication,” ASLE Transactions, Vol. 21, n°1 (1978),
pp.41-52.
[237] Wilson W.R.D. & Sheu S., “Effect of Inlet Shear Heating Due to Sliding on Elastohydrodynamic Film
Thickness,” ASME Journal of Lubrication Technology, Vol. 105, Series F, n°2 (1983), pp.187-188.
[238] Xu G., Sadeghi F. & Cogdell J.D., “Debris Denting Effects on Elastohydrodynamic Lubricated Contacts,”
ASME Journal of Tribology, Vol. 119, n°3 (1997), pp.579-587.
[239] Xu G., Sadeghi F. & Hoeprich M.R., “Dent Initiated Spall Formation in EHL Rolling/Sliding Contacts,” ASME
Journal of Tribology, Vol. 120, n°3 (1998), pp.453-462.
[240] Xu G., Sadeghi F. & Hoeprich M.R., “Residual Stresses Due to Debris Effects in EHL Contacts,” STLE
Tribology Transactions, Vol. 40, n°4 (1997), pp.613-620.
[241] Yasutomi S., Bair S. & Winer W.O., “An Application of a Free Volume Model to Lubricant Rheology I –
Dependence of Viscosity on Temperature and Pressure,” ASME Journal of Tribology, Vol. 106, n°2 (1984),
pp.291-303.
[242] Yoshioka T. & Fujiwara T., “Application of Acoustic Emission Technique to Detection of Rolling Bearing
Failure,” in Acoustic Emission Monitoring and Analysis in Manufacturing, Dornfeld ed., ASME, New-York,
PED-Vol. 14 (1984), pp.55-75.
[243] Yoshioka T. & Fujiwara T., “Measurement of Propagation Initiation and Propagation Time of Rolling Contact
Fatigue Cracks by Observation of Acoustic Emission and Vibration,” in Interface Dynamics, Proceedings of the
14th Leeds-Lyon Symposium on Tribology, Lyon, France, 1987, Dowson et al. ed., Elsevier, Amsterdam,
Tribology series, Vol. 12 (1988), pp.29-33.
[244] Yoshioka T. & Mano H., “Relationship between Acoustic Emission Source Position and Spalling Position in
Radial Rolling Bearings,” In Tribology for Energy Conservation, Proceedings of the 24th Leeds-Lyon
Symposium on Tribology, London, UK, 1997, Dowson et al. ed., Elsevier, Amsterdam, Tribology series, Vol. 34
(1998), pp.413-422
147
[245] Yoshioka T. & Takeda M., “Clarification of Rolling Contact Fatigue Initiation Using Acoustic Emission
Technique,” Lubrication Engineering, Vol. 51, n°1 (1995), pp.41-44.
[246] Yoshioka T., “Detection of Rolling Contact Sub-Surface Fatigue Cracks Using Acoustic Emission Technique,”
Lubrication Engineering, Vol. 49, n°4 (1993), pp.303-308.
[247] Yoshioka T., Korenaga A., Mano H. & Yamamoto T., “Diagnosis of Rolling Bearing by Measuring Time
Interval of AE Generation,” ASME Journal of Tribology, Vol. 121, n°3 (1999), pp.468-472.
[248] Zhou R.S. & Hoeprich M.R., “Torque of Tapered Roller Bearings,” ASME Journal of Tribology, Vol. 113, n°3
(1991), pp.590-597.
148