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Stress Intensity Factor Analysis and Fatigue Behavior of A Crack in The Residual Stress Field of Welding Cover

Stress Intensity Factor Analysis and Fatigue Behavior of A Crack in The Residual Stress Field of Welding

By:   
Open Access
|Aug 2011

References

  1. Hoeppner, D.W. (1978).. American Society for Testing and Materials STP 648.
  2. Throop, J.F. & Reemsnyder, H.S. (1982).. American Society for Testing and Materials STP 776.
  3. Nelson, D.V. (1982).. American Society for Testing and Materials STP 776, (pp. 172 - 188).
  4. Parker, A.P. (1982).. American Society for Testing and Materials STP 776, (pp. 188 - 194).
  5. Terada, H. (1976). An Analysis of the Stress Intensity Factor of a Crack Perpendicular to the Welding Bead.. 8(3), 441 - 444.
  6. Tada, H. & Paris, P.C. (1983). The Stress Intensity Factor for a Crack Perpendicular to the Welding Bead.. 21(2), 279 - 284.
  7. Kanazawa, T., Oba, H. & Susei, S. (1962). The Effect of Welding Residual Stress Upon Brittle Fracture Propagation (Rept. 2).. No. 110, 359 - 368.
  8. Terada, H. & Nakajima, T. (1985). Analysis of Stress Intensity Factor of a Crack Approaching Welding Bead.. Vol. 27, 83 - 90.
  9. Abramowitz, M. & Stegun, A. (1954).. Dover ed. p. 890.
  10. ibid., p. 889.
  11. Glinka, G. I. Inni. (1979).. American Society for Testing and Materials STP 677. (pp. 198 - 212).
  12. Newman, J.C., Jr. (1981).. NASA. (TM 81941)
DOI: https://doi.org/10.2478/v10164-010-0032-8 | Journal eISSN: 2300-7591 | Journal ISSN: 2081-7738
Language: English
Page range: 5 - 15
Published on: Aug 25, 2011
Published by: ŁUKASIEWICZ RESEARCH NETWORK – INSTITUTE OF AVIATION
In partnership with: Paradigm Publishing Services

© 2011 Hiroyuki Terada, published by ŁUKASIEWICZ RESEARCH NETWORK – INSTITUTE OF AVIATION
This work is licensed under the Creative Commons License.