This content is not included in your SAE MOBILUS subscription, or you are not logged in.

Theoretical Framework for Modeling Spot Welds under Various Types of Loading Conditions

Journal Article
2008-01-1136
ISSN: 1946-3979, e-ISSN: 1946-3987
Published April 14, 2008 by SAE International in United States
Theoretical Framework for Modeling Spot Welds under Various Types of Loading Conditions
Sector:
Citation: Lin, P. and Pan, J., "Theoretical Framework for Modeling Spot Welds under Various Types of Loading Conditions," SAE Int. J. Mater. Manf. 1(1):559-567, 2009, https://doi.org/10.4271/2008-01-1136.
Language: English

References

  1. Zhang S. 1999 Approximate stress intensity factors and notch stresses for common spot-welded specimens Welding Research Supplement 78 173s 179s
  2. Pook L. P. 1975 Fracture mechanics analysis of the fatigue behavior of spot welds International Journal of Fracture 11 173 176
  3. Pook L. P. 1979 Approximate stress intensity factors obtained from simple plane bending theory Engineering Fracture Mechanics 12 505 522
  4. Radaj D. 1989 Stress singularity, notch stress and structural stress at spot-welded joints Engineering Fracture Mechanics 34 495 506
  5. Radaj D. Zhang S. 1991a Stress intensity factors for spot welds between plates of unequal thickness Engineering Fracture Mechanics 39 391 413
  6. Radaj D. Zhang S. 1991b Simplified formulae for stress intensity factors of spot welds Engineering Fracture Mechanics 40 233 236
  7. Radaj D. Zhang S. 1992 Stress intensity factors for spot welds between plates of dissimilar materials Engineering Fracture Mechanics 42 407 426
  8. Sheppard S. D. 1993 Estimation of fatigue propagation life in resistance spot welds Mitchell M.R. Landgraf R.W. Advances in Fatigue Lifetime Predictive Techniques 2 ASTM STP 1211 American Society for Testing and Materials Philadelphia 169 185
  9. Swellam M. H. Banas G. Lawrence F. V. 1994 A fatigue design parameter for spot welds Fatigue and Fracture of Engineering Materials and Structures 17 1197 1204
  10. Zhang S. 1997 Stress intensities at spot welds International Journal of Fracture 88 167 185
  11. Zhang S. 2001 Fracture mechanics solutions to spot welds International Journal of Fracture 112 247 274
  12. Wang D.-A. Lin S.-H. Pan J. 2005 Stress intensity factors for spot welds and associated kinked cracks in cup specimens International Journal of Fatigue 27 581 598
  13. Wang D.-A. Lin P.-C. Pan J. 2005 Geometric functions of stress intensity factor solutions for spot welds in lap-shear specimens International Journal of Solids and Structures 42 6299 6318
  14. Lin P.-C. Wang D.-A. Pan J. 2007 Mode I stress intensity factor solutions for spot welds in lap-shear specimens International Journal of Solids and Structures 44 1013 1037
  15. Muskhelishvili N. I. 1953 Some Basic Problems of the Mathematical Theory of Elasticity Noordhoff, Groningen
  16. Reiβner H. 1929 Über die unsymmetrische biegung dünner kreisringplatten Ingenieur-Archiv 1 72 83
  17. Goland M. 1943 The influence of the shape and rigidity of an elastic inclusion on the transverse flexure of thin plates Journal of Applied Mechanics 10 A-69 A-75
  18. Timoshenko S. Woinowsky-Krieger S. 1959 Theory of Plates and Shells 2nd McGrow-Hill New York
  19. Rupp A. Grubisic V. Radaj D. 1990 Betriebsfestigkeit von Punktschweissverbindunghen Sonderdruck aus Materialprüfung 32 1 6
  20. Rupp A. Storzel K. Grubisic V. 1995 Computer aided dimensioning of spot welded automotive structures SAE Technical Paper No. 950711 Society of Automotive Engineers Warrendale, Pa
  21. Salvini P. Scardecchia E. Vivio F. 1997 Fatigue life prediction on complex spot weld joints SAE Transaction, Journal of Materials and Manufacturing 106 967 975
  22. Salvini P. Vivio F. Vullo V. 2000 A spot weld finite element for structural modeling International Journal of Fatigue 22 645 656
  23. Vivio F. Ferrari G. Salvini P. Vullo V. 2002 Enforcing of an analytical solution of spot welds into finite element analysis for fatigue-life estimation International Journal of Computer Applications in Technology 15 218 229
  24. Lin P.-C. Pan J. 2007 Closed-form stress intensity factor solutions for spot welds in various types of specimens SAE Technical Paper no. 08M-245 Society of Automotive Engineering Warrendale, PA
  25. Lin P.-C. Pan J. 2007 Closed-form structural stress and stress intensity factor solutions for spot welds under various types of loading conditions International Journal of Solids and Structures
  26. Rice J. R. 1968 A path independent integral and the approximate analysis of strain concentration by notches and cracks Journal of Applied Mechanics 35 379 386

Cited By