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Original Articles

Material Inclusion Factors for Lundberg-Palmgren–Based RCF Life Equations

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Pages 457-469 | Received 12 Sep 2010, Accepted 01 Feb 2011, Published online: 24 Mar 2011

REFERENCES

  • Littmann , W. E. and Widner , R. L. 1966 . “Propagation of Contact Fatigue from Surface and Sub-Surface Origins,” . Journal of Basic Engineering. , 88 : 624 – 636 .
  • Littmann , W. E. 1969 . “The Mechanism of Contact Fatigue,” . Interdisciplinary Approach to the Lubrication of Concentrated Contacts, NASA Special Report , SP-237
  • Nishioka , K. 1957 . “On the Effect of Inclusion upon the Fatigue Strength,” . Materials. Testing: Society of Materials Science. , 6 : 382 – f385 .
  • Murakami , Y. , Kodama , S. and Konuma , S. 1989 . “Quantitative Evaluation of Effects of Non-Metallic Inclusions on Fatigue Strength of High Strength Steels. I: Basic Fatigue Mechanism and Evaluation of Correlation between the Fatigue Fracture Stress and the Size and Location of Non-Metallic Inclusions,” . International Journal of Fatigue , 11 ( 5 ) : 291 – 298 .
  • Voskamp , A. P. , Osterlund , R. , Becker , P. C. and Vingsbo , O. 1980 . “Gradual Changes in Residual Stress and Microstructure During Contact Fatigue in Ball Bearings,” . Metals Technology , 7 : 14 – 21 .
  • Voskamp , A. P. 1985 . “Material Response to Rolling Contact Loading,” . Journal of Tribology , 107 : 359 – 366 .
  • Voskamp , A. P. 1998 . “Fatigue and Material Response in Rolling Contact,” . Bearing Steels: Into the 20th Century , ASTM STP 1328
  • Voskamp , A. P. and Mittemeijer , E. J. 1997 . “The Effect of the Changing Microstructure on the Fatigue Behavior During Cyclic Rolling Contact Loading,” . Zeitschrift fiir Metallkunde , 88 : 310 – 319 .
  • Jalalahmadi , B. and Sadeghi , F. 2009 . “A Voronoi Finite Element Study of Fatigue Life Scatter in Rolling Contacts,” . Journal of Tribology , 131 ( 2 ) : 022203-1 – 022203-15 .
  • Lundberg , G. and Palmgren , A. 1947 . “Dynamic Capacity of Rolling Bearings,” . Acta Polytechnica Scandinavicai, Mechanical Engineering Series , 1 ( 3 ) : 7 – 53 .
  • Chiu , Y. P. , Tallian , T. E. and McCool , J. I. 1971 . “An Engineering Model of Spalling Fatigue Failure in Rolling Contact–the Subsurface Model,” . Wear , 17 : 433 – 446 .
  • Ioannides , E. and Harris , T. A. 1985 . “A New Fatigue Life Model for Rolling Bearings,” . Journal of Tribology , 107 ( 3 ) : 367 – 378 .
  • Schlicht , H. , Schreiber , E. and Zwirlein , O. 1986 . “Fatigue and Failure Mechanism of Bearings,” . IMechE London , : 85 – 90 . C285/86
  • Tallian , T. E. 1992 . “Simplified Contact Fatigue Life Prediction Model—Part I: Review of Published Models,” . Journal of Tribology , 114 : 207 – 213 .
  • Tallian , T. E. 1992 . “Simplified Contact Fatigue Life Prediction Model—Part II: New Model,” . Journal of Tribology , 114 : 214 – 222 .
  • Zaretsky , E. V. 1994 . “Design for Life, Plan for Death,” . Machine Design , 66 ( 15 ) : 55 – 59 .
  • Keer , L. M. and Bryant , M. D. 1983 . “A Pitting Model for Rolling Contact Fatigue,” . Journal of Lubriction Technology , 105 : 198 – 205 .
  • Bhargava , V. , Hahn , G. T. and Rubin , C. A. 1990 . “Rolling Contact Deformation, Etching Effects and Failure of High Strength Steels,” . Metallurgical. Transactions , A 21 : 1921 – 1931 .
  • Zhou , R. S. 1993 . “Surface Topography and Fatigue Life of Rolling Contact Bearings,” . Tribology Transactions , 36 : 329 – 340 .
  • Cheng , W. and Cheng , H. S. 1997 . “Semi-Analytical Modeling of Crack Initiation Dominant Contact Fatigue for Roller Bearings,” . ASME J. Tribology , 119 ( 2 ) : 233 – 240 .
  • Lormand , G. , Meynaud , G. , Vincent , A. , Baudry , G. , Girodin , D. and Dudragne , G. 1998 . “From Cleanliness to Rolling Fatigue Life of Bearings—A New Approach,” . Bearing Steels: Into the 21st Century , ASTM STP 1327
  • Jiang , Y. and Sehitoglu , H. 1999 . “A Model for Rolling Contact Failure,” . Wear , 224 : 38 – 49 .
  • Styri , H. 1951 . “Fatigue Strength of Ball Bearing Races and Heat-Treated 52100 Steel Specimens,” . Proceedings of the American Society for Testing and Materials , 51 : 682 – 700 .
  • Bohmer , H. J. 1993 . “Rolling Contact Fatigue,” . In Research—A Basis for Products of the Future , 37 – 45 . Schweinfurt, , Germany : FAG Kugelfischer Georg Schafer KGaA . Publ. WL40205EA
  • Bohmer , H. J. 1993 . “A New Approach to Determine the Effect of Nonmetallic Inclusions on Material Behavior in Rolling Contact,” . Creative Use of Bearing Steels , ASTM STP 1195
  • Martin , J. A. , Borgese , S. F. and Eberhardt , A. D. 1966 . “Microstructural Alterations of Rolling-Bearing Steel Undergoing Cyclic Stressing,” . Journal of Basic Engineering , 88 : 555 – 567 .
  • O’Brien , J. L. and King , A. H. 1966 . “Electron Microscopy of Stress Induced Structural Alterations near Inclusions in Bearing Steels,” . Journal of Basic Engineering , 88 : 568 – 572 .
  • Kinoshi , K. M. 1974 . “Effect of Nonmetallic Inclusions on Rolling Contact Fatigue Life in Bearing Steels,” . Bearing Steels: Rating Nonmetallic Inclusions Symposium , ASTM STP 575
  • Freitas , M. and Francois , D. 1983 . “Initiation of Fatigue Cracks Around Inclusions in Rolling Fatigue,” . Elastic-Plastic Fracture: Second Symposium, Volume II—Fracture Resistance Curves and Engineering Applications , ASTM STP, 803
  • Chen , Q. , Shao , E. , Zhao , D. , Guo , J. and Fan , Z. 1991 . “Measurement of the Critical Size of Inclusions Initiating Contact Fatigue Cracks and Its Application in Bearing Steel,” . Wear , 147 : 285 – 294 .
  • Melander , A. 1997 . “A Finite Element Study of Short Cracks with Different Inclusion Types under Rolling Contact Fatigue Load,” . International Journal of Fatigue , 19 : 13 – 24 .
  • Kabo , E. 2002 . “Material Defects in Rolling Contact Fatigue—Influence of Overloads and Defect Clusters,” . International Journal of Fatigue , 24 : 887 – 894 .
  • Johnson , R. F. and Sewell , J. F. 1960 . “The Bearing Properties of 1% C-Cr Steel Influenced by Steelmaking Practice,” . Journal of the Iron and Steel Institate , 196 ( 4 ) : 414 – 444 .
  • Morrison , T. W. , Tallian , T. , Walp , H. O. and Baile , G. H. 1962 . “The Effect of Material Variables on the Fatigue Life of AISI 52100 Steel Ball Bearings,” . ASLE Transactions , 5 ( 2 ) : 347 – 364 .
  • Bamberger , E. N. and Clark , J. C. 1982 . “Development and Application of the Rolling Contact Fatigue Test Rig,” . Rolling Contact Fatigue Testing of Bearing Steels , ASTM STP-771
  • Zaretsky , E. V. , ed. 1999 . “STLE Life Factors for Rolling Bearings,” . STLE Publication SP-34
  • Jalalahmadi , B. and Sadeghi , F. 2010 . “A Voronoi FE Fatigue Damage Model for Life Scatter in Rolling Contacts,” . Journal of Tribology , 132 ( 2 ) : 021404 – 1-021404-14 .
  • Raje , N. and Sadeghi , F. 2009 . “Statistical Numerical Modeling of Sub-Surface Initiated Spalling in Bearing Contacts,” . Proceeding of the Institution Mechanical Engineeing , 223 : 849 – 858 . Part J: Journal Engineering Tribology
  • Harris , T. A. and Barnsby , R. M. 2001 . “Life Ratings for Ball and Roller Bearings,” . Proceeding of the Institution of Mechnical Engineering , 215 : 577 – 595 . Part J: Journal of Engineering Tribology
  • Okabe , A. and Boots , B. 1992 . Spatial Tessellations: Concepts and Applications of Voronoi Diagrams , New York : John Wiley & Sons .
  • Moller , J. 1994 . Lectures Notes on Random Voronoi Tessellations , Berlin : Springer .
  • Ito , O. and Fuller , E. R. 1993 . “Computer Modeling of Anisotropic Grain Microstructure in Two Dimensions,” . Acta Metallurgica et Materialia , 41 : 191 – 198 .
  • Zavattieri , P. D. and Espinosa , H. D. 2001 . “Grain Level Analysis of Crack Initiation and Propagation in Brittle Materials,” . Acta Materialia , 49 : 4291 – 4311 .
  • Raje , N. , Sadeghi , F. , Rateick , R. G. Jr. and Hoeprich , M. R. 2007 . “Evaluation of Stresses Around Inclusions in Hertzian Contacts Using the Discrete Element Method,” . Journal of Tribology , 129 ( 2 ) : 283 – 291 .
  • Harris , T. A. 2001 . Rolling Bearing Analysis , New York : John Wiley & Sons .
  • Chevalier , J. L. , Zaretsky , E. V. and Parker , R. J. 1973 . “A New Criterion for Predicting Rolling element Fatigue Lives of Through-Hardened Steels,” . Journal of Lubrication Technology , 95 ( 3 ) : 287 – 297 .

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