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Analyzing Field Failures of Engine Valve Springs in Presence of Non Metallic Inclusions by Applying Statistical and Fracture Mechanics Models

Journal Article
2009-01-0528
ISSN: 1946-3979, e-ISSN: 1946-3987
Published April 20, 2009 by SAE International in United States
Analyzing Field Failures of Engine Valve Springs in Presence of Non Metallic Inclusions by Applying Statistical and Fracture Mechanics Models
Sector:
Citation: Choucair, H. and Jawad, B., "Analyzing Field Failures of Engine Valve Springs in Presence of Non Metallic Inclusions by Applying Statistical and Fracture Mechanics Models," SAE Int. J. Mater. Manf. 2(1):265-273, 2009, https://doi.org/10.4271/2009-01-0528.
Language: English

References

  1. Anderson C.W. Atkinson H.V. Sellars C.M. Ship G. “Application of the Generalized Pareto Distribution to the Estimation of the Size of the Maximum Inclusion in Clean Steels” Acta Mater 1999 47 5 1455 1468
  2. Anderson C.W Atkinson H.V. Sellars C.M. Shi G. “Statistical Prediction of Inclusion Sizes in Clean Steels” Materials Science and Technology Oct. 2000 16 1175 1180
  3. Anderson C.W. Atkinson H.V. Sellars C.M. Shi G. “Maximum Inclusion Size in Two Clean Steels Part 1 Comparison of Maximum Size estimates by Statistics of Extremes and Generalized Pareto Distribution Methods” Iron making and Steelmaking 2000 27 5 355 360
  4. Anderson C.W. Atkinson H.V. Sellars C.M. Shi G. Yates J.R. “Interrelationship between Statistical Methods for Estimating the Size Of the Maximum Inclusion in Clean Steels” Acta Mater Jan. 2003
  5. Anderson C.W. Atkinson H.V. Sellars C.M. Shi G. “The Precision Of Methods Using the Statistics of Extremes for the Estimation of the Maximum Size of Inclusions in Clean Steels” Acta Mater Aug. 2000 48 4235 4246
  6. Anderson C.W. Atkinson H.V. Sellars C.M. Shi G. “Comparison of Extreme Value Statistics Methods for Predicting Maximum Inclusion Size in Clean Steels” Iron making and Steelmaking 1999 26 239 246
  7. Melander Arne Rolfsson Mats Nordgre Anders Janson Bo Hedberg Hakan Lund Thore “Influence of inclusion contents on fatigue properties of SAE 52100 bearing steels” Scandinavian Journal of SD Metallrgy 20 1991 229 244
  8. Bathias C. Chen Q. Wang Q.Y. “Effect of Inclusion on Subsurface Crack Initiation and Gigacycle Fatigue Strength” International Journal of Fatigue 2002
  9. Bertetta S. Murakami Y. “Largest-Extreme-Value Distribution Analysis of Multiple Inclusion Types in Determining Steel Cleanliness” Metallurgical and Materials Transactions June 2001 32B 517
  10. Anderson C.W. Mare J.DE Rootzen H. “Methods for estimating the sizes of large inclusions in clean steels” Acta Materialia 53 2005 2295 2304
  11. Endo M. Murakami Y. “Effects of Defects, Inclusions, and Inhmogeneities on Fatigue Strength” Int. J. of Fatigue April 1994 16 163 182
  12. Castallo Enrique Hadi Ali “Extreme Value and Relate Models with Applications in Engineering and Sciences” Gumbel E.J. statistics of extremes Columbia University Press NYC 1958
  13. Shi G. Atkinson H.V. Sellars C.M. Anderson C.W. “Comparison of extreme value statistics methods for predicting maximum inclusion size in clean steels Ironmaking and Steelmaking 1999 26 4 239
  14. Shi G. Atkinson H.V. Sellars C.M. Anderson C.W. “APLICATION OF THE Generalized Pareto Distribution to the Estimation of the size of the maximum inclusion in clean steel” Acta Mater 47 5 1455 1468 1999 Acta Metallurigics Inc.
  15. Hillbury B.M. Laz P.J. “Fatigue Life Prediction from Inclusion nitiated Cracks” International Journal o Fatigue 1998 20 4 263 270
  16. Wadsworth H.M. Handbook of Statistical Methods for Engineers and Scientists McGraw-Hill Publishing Company 1990
  17. Schijve J. “Statistical distribution functions and Fatigue structures” international Journal of Fatigue 27 2005 1031 1039
  18. Yukitaka Murakami Junji Nagata “Effects of Small Defects on Fatigue Properties of Materials, Mechanism of Ultralong Life Fatigue and Applications toFatigue Design of Car Components” SAE March 2002
  19. Laz P.J Hillberry B.M “Fatigue life prediction from inclusion Initiated cracks” Int.j. Fatigue 20 4 263 270 1998
  20. ReliaSoft-Weibull++ VERSION 6 2002 University of Arizona Tucson
  21. Reiss R.D. Thomas M. 1997 Statistical Analysis of Extreme Values Birkhauser Verlag Boston, MA
  22. Beretta Stefano Anderson Clive Murakmi Yukitaka Extreme Value models for the assessment of steels containing multiple types of inclusion Acta Mater Aug. 2006 54
  23. RAO S.S. Reliability Based Design McGraw-Hill 1992
  24. Suess Steven J. “Failure Analysis of Automotive Components” SAE Technical Paper Series 2004

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