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Original Articles

Ferrographic Analysis of Wear Debris Generated in Accelerated Rolling Element Fatigue Tests

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Pages 37-45 | Published online: 25 Mar 2008

REFERENCES

  • Beerbower , A. , “ Spectrometry and Other Analysis Tools for Failure Prognosis ,” Lubr. Eng. , 32 , 285 ( 1976 ).
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  • Westcott , V. C. and Seifert , W. W. , “ Investigation of Iron Content of Lubricating Oils using Ferrograph and Emission Spectrometer ,” Wear , 23 , 239 ( 1973 ).
  • Scott , D. , Seifert , W. W. and Westcott , V. C. , “ Ferrography—An Advanced Design Aid for the 80's ,” Wear , 34 , 251 ( 1975 ).
  • Reda , A. A. , Bowen , R. and Westcott , V. C. , “ Characteristics of Particles Generated at the Interface Between Sliding Steel Surfaces ,” Wear , 34 , 261 ( 1975 ).
  • Scott , D. , Seifert , W. W. and Westcott , V. C. , “ The Particles of Wear ,” Sci. Am. , 230 , pp 88 – 97 ( 1974 ).
  • Westcott , V. C. and Middleton , J. L. , “ The Investigation and Interpretation of the Nature of Wear Particles ,” Trans-Sonics, Inc. (AD-A003553). Burlington , Mass. ( 1974 ).
  • Scott , D. and Mills , G. H. , “ Debris Examination in the SEM: A Prognostic Approach to Failure Prevention,” in Seventh Annual Symposium on Scanning Electron Microsc.: Workshop on Failure Analysis , Inst. Technol. Rest. Inst. , 1974 , pp 883 – 888
  • Scott , D. and Mills , G. H. , “ Spherical Debris—Its Occurrence, Formation and Significance in Rolling Contact Fatigue ,” Wear , 24 , 235 ( 1973 ).
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  • Carter , T. L. , Zaretsky , E. V. and Anderson , W. J. , “ Effect of Hardness and Other Mechanical Properties on Rolling-Contact Fatigue Life of Four High-Temperature Bearing Steels ,” NASA TN D-270 ( 1960 ).
  • Parker , R. J. and Hodder , R. S. , “ Effect of Double Vacuum Melting and Retained Austenite on the Rolling-Element Fatigue Life of AMS 5749 Corrosion Resistant, High Temperature Bearing Steel ,” NASA TN (in process).
  • Jones , W. R. , Jr. , “ Ferrographic Analysis of Wear Debris from Boundary Lubrication Experiments with a Five-Ring Polyphenyl Ether ,” ASLE Trans. , 18 , 153 ( 1975 ).
  • Broszeit , E. and Hess , F. J. , “ Discussion to “A Scanning Electron Microscope Study of Fracture Phenomena Associated with Rolling Contact Fatigue Failure ,” Wear , 17 , 314 ( 1971 ).
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  • Dalal , H. , et al. “ Progression of Surface Damage in Rolling Contact Fatigue ,” SKF-AL74T002 , SKF Industries, Inc. (AD-780453) . King of Prussia , Pa. ( 1974 ).
  • Schatzberg , P. and Felsen , I. M. , “ Effects of Water and Oxygen During Rolling Contact Lubrication ,” Wear , 12 , 331 ( 1968 ).

REFERENCES

  • Zaretsky , E. V. , Anderson , W. J. and Parker , R. J. , “ The Effect of Contact Angle on Rolling-Contact Fatigue and Bearing Load Capacity ,” ASLE Trans. , 5 , No. 1 , pp 210 – 219 ( 1962 ).
  • Zaretsky , E. V. , Sibley , L. B. and Anderson , W. J. , “ The Role of Elastohydrodynamic Lubrication in Rolling-Contact Fatigue ,” J. of Basic Eng., Trans. ASME , Series D, 85 , No. 3 , pp 439 – 450 ( 1963 ).
  • Zaretsky , E. V. , Parker , R. J. and Anderson , W. J. , “ Component Hardness Differences and Their Effect on Bearing Fatigue ,” J. of Lubr. Tech., Trans. ASME , Series F, 89 , No. 1 , pp 47 – 62 ( 1967 ).

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