Skip to main content

Thermal Analysis of Welds

  • Chapter
Book cover Computational Welding Mechanics
  • 2923 Accesses

This is a preview of subscription content, log in via an institution to check access.

Access this chapter

Chapter
USD 29.95
Price excludes VAT (USA)
  • Available as PDF
  • Read on any device
  • Instant download
  • Own it forever
eBook
USD 189.00
Price excludes VAT (USA)
  • Available as PDF
  • Read on any device
  • Instant download
  • Own it forever
Softcover Book
USD 249.99
Price excludes VAT (USA)
  • Compact, lightweight edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info
Hardcover Book
USD 249.99
Price excludes VAT (USA)
  • Durable hardcover edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info

Tax calculation will be finalised at checkout

Purchases are for personal use only

Institutional subscriptions

Preview

Unable to display preview. Download preview PDF.

Unable to display preview. Download preview PDF.

References

  1. Goldak J.A., Patel B., Bibby M. and Moore J Computational weld mechanics, AGARD Conf. Proceedings No. 398, June 1985

    Google Scholar 

  2. Gu M., Goldak J.A. and Bibby M.J.; Computational heat transfer in welds with complex weld pool shapes, Adv. Manuf. Eng., Vol. 3, January 1991

    Google Scholar 

  3. Lindgren L-E. Finite element modeling and simulation of welding Part I Increased complexity, J of Thermal Stresses 24, pp 141–192, 2001

    Article  Google Scholar 

  4. Radaj D. Eigenspannungen und Verzug beim Schweissen, Rechen-und Messverfahren, Fachbuchreihe Schweisstechnik, DVS-Verlag GmbH, Duesseldorf 2000

    Google Scholar 

  5. Barlow J.A. One weld or two? The formation of a submergend are weld pool, Welding Inst. Res. Bull., pp. 177–180, June 1982

    Google Scholar 

  6. Kraus H.G. Experimental measurement of stationary SS 304, SS 316L and 8630 GTA weld pool surface, Welding J.

    Google Scholar 

  7. Glickstein S.S. and Friedman E. Effect of weld pool configuration on heat affected zone shape, Tech. Notes Welding Res. Suppl. Thesis, pp 110–112, June 1981

    Google Scholar 

  8. Radaj D. Schweissprozessimulation, DVS-Verlag, Duesseldorf 1999

    Google Scholar 

  9. Jones BK, Emery AF and Marburger J. An analytical and experimental study of the effects of welding parameters in fusion welds, Welding J Vol. 72, No. 2, pp 51s–59s, 1993

    Google Scholar 

  10. Jones B.K., Emery A.F. and Marburger J. Design and analysis of a test coupon for fusion welding, ASME J. Pressure Vessel Technology, Vol. 115, pp 38–46, 1993

    Article  Google Scholar 

  11. Roclens J.B., Maltrud F. and Lu J. Determination of residual stresses in submerged are multi-pass welds by means of numerical simulation and comparison with experimental measurements, Welding in the World, Vol. 33, No. 3, pp 152–159, 1994

    Google Scholar 

  12. Roelens J.B. Numerical simulation of multipass submerged are welding-determination of residual stresses and comparison with experimental measurements, Welding in the World, Vol. 35, No. 2, pp 110–117, 1995

    Google Scholar 

  13. Lindgren L-E., Runnemalm H. and Naesstroem M.O. Numerical and experimental investigation of multipass welding of a thick plate. Int. J. for Numerical Methods in Engineering, Vol. 44, No. 9, pp 1301–1316, 1999

    Article  MATH  Google Scholar 

  14. Gu M., Goldak J.A. and Hughes E. Steady state thermal analysis of welds with filler metal addition

    Google Scholar 

  15. Goldak J., Chakravarti A. and Bibby M. A finite element model for welding heat sources, Metallurgical Transactions B, Vol. 15B, pp 299–305, June 1984

    Google Scholar 

  16. McDill J.M.J. (1988). An adaptive mesh-management algorithm for three-dimensional finite element analysis. PhD thesis, Carleton University.

    Google Scholar 

  17. Rykalin R.R. Energy sources for welding, Welding in the World, Vol. 12, No. 9/10, pp 227–248, 1974

    Google Scholar 

  18. Rosenthal D. the theory of moving sources of heat and its application to metal treatments, Trans ASME, Vol. 68, pp 849–865, 1946

    Google Scholar 

  19. Pavelic V., Tanbakuchi R., Uyehara O. A. and Myers: Experimental and computed temperature histories in gas tungsten are welding of thin plates, Welding Journal Research Supplement, Vol. 48. pp 295s–305s, 1969

    Google Scholar 

  20. Sudnik V.A. and Erofeew W.A. Computerberechnungen von Schweissprozessen, Techn. Hochschule Tula, Schweden, 1986

    Google Scholar 

  21. Ohji T., Ohkubo A. and Nishiguchi K. Mathematical modeling of molten pool in are welding, Mechanical Effects of Welding, pp 207–214, Publ. Springer, Berlin 1992

    Google Scholar 

  22. Weiss D., Schmidt J. and Franz U. A model of temperature distribution and weld pool deformation during are welding, Mathematical Modeling of Weld Phenomena 2, Edited by Cerjak H. and series Editor Bhadeshia H.K.D.H., The Institute of Materials 1995

    Google Scholar 

  23. Khoral P (1989). Coupling microstructure to heat transfer computation in weld analysis. Masters Thesis, Carleton University

    Google Scholar 

  24. Sudnik W., Radaj D. and Erofeew W. Validation of computerized simulation of welding processes; 4th Int. Seminar on Numerical Analysis of Weldability, Seggau near Graz, 29. Sept.–1 Oct. 1997

    Google Scholar 

  25. Sudnik W., Radaj D. and Erofeew W. Computerized simulation of laser beam weld formation comprising joint gaps; J. Phys. D. Appl. Phys. 31, pp 3475–3480, 1998

    Article  Google Scholar 

  26. Sudnik W., Radaj D., Breitschwerdt S. and Erofeew W. Numerical simulation of weld pool geometry in laser beam welding; J Phys. D. Appl. Phys. 33, pp 662–671, 2000

    Article  Google Scholar 

  27. Radaj D., Sudnik V., Karpuchin E. Berger P. and Heckeler G. Comparison of heat sources for modeling laser beam welding; Publication in Metallurgical and Materials Transactions B

    Google Scholar 

Download references

Rights and permissions

Reprints and permissions

Copyright information

© 2005 Springer Science+Business Media, Inc.

About this chapter

Cite this chapter

(2005). Thermal Analysis of Welds. In: Computational Welding Mechanics. Springer, Boston, MA. https://doi.org/10.1007/0-387-23288-5_3

Download citation

  • DOI: https://doi.org/10.1007/0-387-23288-5_3

  • Publisher Name: Springer, Boston, MA

  • Print ISBN: 978-0-387-23287-4

  • Online ISBN: 978-0-387-23288-1

  • eBook Packages: EngineeringEngineering (R0)

Publish with us

Policies and ethics