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The Impact of Die Start-Up Procedure for High Pressure Die Casting

Journal Article
2013-01-0829
ISSN: 1946-3979, e-ISSN: 1946-3987
Published April 08, 2013 by SAE International in United States
The Impact of Die Start-Up Procedure for High Pressure Die Casting
Sector:
Citation: Long, A., Thornhill, D., Armstrong, C., and Watson, D., "The Impact of Die Start-Up Procedure for High Pressure Die Casting," SAE Int. J. Mater. Manf. 6(3):416-426, 2013, https://doi.org/10.4271/2013-01-0829.
Language: English

References

  1. Andresen , Bill Die Casting Engineering New York Marcel Dekker 2005 0-8247-5935-4
  2. Klobcar , D and Tusek , J. Thermal stresses in aluminium alloy die casting dies Compution Materials Science 43 2008
  3. Manson , S S. Thermal Stress and Low Cycle Fatigue McGraw-Hill 1966 65 25918
  4. Collin , M and Rowcliffe , D. Analysis and prediction of thermal shock in brittle materials Elsevier Science Ltd. Acta Materialia 2000 48
  5. Moon , Y H , Kim , J W and Van Tyne , C J. Thermal shock resistance of electroslag cast steel for hot-working tools Elsevier, Journal of Materials Processing Technology 2004
  6. Price , J W H. Thermal Shock Cracking: Design and assessment Guidelines Journal of PressureVessel Technology 2007 129
  7. Tabe , H. Crack Resistance of Hardened Steels against Thermal Shock 6th International Tooling Conference 2002
  8. Davis , J R. Tool Materials ASM International 1995 0-87170-545-1
  9. Long , A D. Extending life of high pressure die casting dies Thesis. Ph.D. Faculty of Engineering and Physical Sciences. Queen's University Belfast July 2010 11706
  10. Lee , F T. An assessment of material properties on Bohler W360 Isoblock for Hot Work Tool Steel Material Science and technology 2007
  11. Bily Matej Cyclic deformation and fatigue of metals Elseveier 1993 0-444-98790-8
  12. Gorbach , V G , Alekhin , V G and Kurganova , G L. Determining thermal fatigue of steels for die casting of aluminium alloys Metal science and heat treatment 1977 19 11 982 98
  13. Srivastava , A , Joshi , V and Shivpuri , R. Computer modeling and prediction of thermal fatigue cracking in die-casting tooling Elsevier Wear 256 2004
  14. Long , A et al. Predicting die life from die temperature for high pressure dies casting aluminium alloy Applied Thermal Engineering 44 2012
  15. Five Steps to Improving Die Performance Diecasting.org March 2007 19 09 2012 http://www.diecasting.org/marketing/files/WhitePaper7.pdf
  16. Magmasoft User Manual 2006
  17. ABAQUS user manual 2007
  18. Guo , Z et al. Determination of the heat transfer coefficient at metal-die interface of high pressure die casting process of AM50 alloy International Journal of heat and Mass Transfer 51 2008
  19. Ehrhardt , R et al. Improving the heat checking characteristics of ALSI H13 by modification of the chemical composition Die casting Engineer 2003 30 37
  20. Long , A D et al. Determination of the heat transfer coefficient at the metal-die interface for high pressure die cast AlSi9Cu3Fe Journal of Applied Thermal Energy 2011 31 17 18
  21. Pries , H et al. Wear of Aluminium Pressure Die Casting Dies 65th World Foundry Congress 2002
  22. Dargush , M S et al. The Accurate Determination of Heat Transfer Coefficient and its Evolution with Time During High Pressure Die Casting of Al-9%Si-3%Cu and Mg-9%Al-1%Zn Alloys Advanced Engineering materials 9 2007 11

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