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MACHINABILITY OF MAGNESIUM AND ITS ALLOYS

Year 2011, Volume: 1 Issue: 3 - Volume: 1 Issue: 3, 31 - 38, 23.07.2016

Abstract

Magnesium and magnesium alloys are used in a wide variety of structural applications including portable microelectronics and telecommunication, automotive, materials-handling and aerospace industries due to their low density. The utilization of magnesium alloys as automotive components is remarkably effective to reduce vehicle weight leading to both reduced discharge of air pollutants (i.e. CO2, SOX and NOX emissions) and energy consumption. Another emerging area of Mg and its alloys are biomedical applications as biodegradable materials which may lead them to become next-generation materials

References

  • 1. B. Denkana, F.Witte, C.Podolsky and A.Lucas: Degradable Implants made of Magnesium Alloys, Proc.5Th. Euspen International Conferance-Montpiller, France, May 2005.
  • 2. B. Denkena, J. C. Becker, C. Podolsky, and A. Kuhlmann: Safe Machining of Magnesium Parts by Cutting and Burnishing Operations, (Edited by K.U. Kainer), Magnesium Proceedings of the 6th International Conference Magnesium Alloys and Their Applications, Wiley-VCH, Germany, 2004.
  • 3. B. L. Mordike and T. Ebert: Magnesium – applications – potential, Journal of Material Science Engineering A 302, pp. 37-45, 2001.
  • 4. E. Gariboldi: Drilling a magnesium alloy using PVD coated twist drills, Journal of Materials Processing Technology 134, p.287-295, 2003.
  • 5. F. Tikal, M. Schmier and C. Vollmer: High-speed-drilling in AZ91 D without Lubri-coolants, (Edited by Mordike and Kainer), Manesium Alloys and their Applications, WILEY-VCH Verlag GmbH, Weinheim, Germany, 2000.
  • 6. F.Z. Fang, L.C. Lee and X.D. Liu: Mean flank temperature measurement in high speed dry cutting of magnesium alloy, Journal of Materials Processing Technology 167 ,119–123, 2005.
  • 7. G. Hanko, C. Lochbichler, W. Riederer and G. Macher: Techniques for Recycling of Magnesium Scrap, (Edited by K.U. Kainer) , Magnesium Proceedings of the 6th International Conference Magnesium Alloys and Their Applications, Wiley-VCH, Germany, 2004.
  • 8. H.E. Friedrich and B.L.Mordike: Magnesium Technology, Springer-Verlag Berlin Heidelberg, Germany, 2006.
  • 9. H.K.Tönsoff and J.Winkler: The Influence of Tool Cutting in Machining of Magnesium, Surface and coating Technology,94-95, p.610-616, 1997.
  • 10. J. F. King: Development of Practical High Temperature Magnesium Casting Alloys, Magnesium Alloys and their Applications. (Edited by B.L.Mordike and K. U. Kainer),WILEY-VCH, Weinheim, Germany, p.14-22, 2000.
  • 11. J. Hou, W. Zhou and N. Zhao: Methods for Prevention of Ignition during Machining of Magnesium Alloys, Key Engineering Materials Vols. 447-448,pp 150-154, 2010.
  • 12. M. Arai, S. Sato, M. Ogawa and H.I Shikata: Chip Control in Finish Cutting of Magnesium Alloy, Journal of Materials Processing Technology 62, 341–344, 1996.
  • 13. M. H.Ruzi , M.Norhamidi, S.Abu Bakar, R.J.Khairur, M.N.Nor Hafiez, A.Sufizar and I.I.Mohd Halim Murtadhahadi: A Review Of Workability Of Wrought Magnesium Alloys, Advanced Manufacturing Research Group’09 Seminar 3, Advanced Manufacturing Research Group, 2009.
  • 14. M. Jönsson and D. Persson: “The influence of the microstructure on the atmospheric corrosion behavior of magnesium alloys AZ91D and AM50, Swerea KIMAB, Drottning Kristinas väg 48, SE-104 05 Stockholm, Sweden, 2010.
  • 15. N. Tomac, K. Tønnesen and T. Mikac: Study of Influence of Aluminium Content on Machinability of Magnesium Alloys, Strojarstvo 50 (6) 363 – 367, 2008.
  • 16. P. Lin, H. Zhou, N.Sun, W. Li, C. Wang, M. Wang, Q. Guo and W. Li: Influence of cerium addition on the resistance to oxidation of AM50 alloy prepared by rapid solidification, Corrosion Science 52, 416–421, 2010.
  • 17. P. Ozsváth, A. Szmejkál and J. Takács: Dry milling of magnesium based hybrid Materials, Transportation Engineering. Vol. 36, p. 73, 2008.
  • 18. S. Y. Lin, S. H. Yu and M. L. Wu: Effect of Different Coating Materials on Cutting Performance in High-Speed Machining of Mold Steels, Key Engineering Materials Vols. 364-366, pp 1026- 1031, 2008.
  • 19. Y.B. Guo and M. Salahshoor: Process mechanics and surface integrity by high-speed dry milling of biodegradable magnesium–calcium implant alloys, CIRP Annals - Manufacturing Technology 59, 151–154, 2010.
Year 2011, Volume: 1 Issue: 3 - Volume: 1 Issue: 3, 31 - 38, 23.07.2016

Abstract

References

  • 1. B. Denkana, F.Witte, C.Podolsky and A.Lucas: Degradable Implants made of Magnesium Alloys, Proc.5Th. Euspen International Conferance-Montpiller, France, May 2005.
  • 2. B. Denkena, J. C. Becker, C. Podolsky, and A. Kuhlmann: Safe Machining of Magnesium Parts by Cutting and Burnishing Operations, (Edited by K.U. Kainer), Magnesium Proceedings of the 6th International Conference Magnesium Alloys and Their Applications, Wiley-VCH, Germany, 2004.
  • 3. B. L. Mordike and T. Ebert: Magnesium – applications – potential, Journal of Material Science Engineering A 302, pp. 37-45, 2001.
  • 4. E. Gariboldi: Drilling a magnesium alloy using PVD coated twist drills, Journal of Materials Processing Technology 134, p.287-295, 2003.
  • 5. F. Tikal, M. Schmier and C. Vollmer: High-speed-drilling in AZ91 D without Lubri-coolants, (Edited by Mordike and Kainer), Manesium Alloys and their Applications, WILEY-VCH Verlag GmbH, Weinheim, Germany, 2000.
  • 6. F.Z. Fang, L.C. Lee and X.D. Liu: Mean flank temperature measurement in high speed dry cutting of magnesium alloy, Journal of Materials Processing Technology 167 ,119–123, 2005.
  • 7. G. Hanko, C. Lochbichler, W. Riederer and G. Macher: Techniques for Recycling of Magnesium Scrap, (Edited by K.U. Kainer) , Magnesium Proceedings of the 6th International Conference Magnesium Alloys and Their Applications, Wiley-VCH, Germany, 2004.
  • 8. H.E. Friedrich and B.L.Mordike: Magnesium Technology, Springer-Verlag Berlin Heidelberg, Germany, 2006.
  • 9. H.K.Tönsoff and J.Winkler: The Influence of Tool Cutting in Machining of Magnesium, Surface and coating Technology,94-95, p.610-616, 1997.
  • 10. J. F. King: Development of Practical High Temperature Magnesium Casting Alloys, Magnesium Alloys and their Applications. (Edited by B.L.Mordike and K. U. Kainer),WILEY-VCH, Weinheim, Germany, p.14-22, 2000.
  • 11. J. Hou, W. Zhou and N. Zhao: Methods for Prevention of Ignition during Machining of Magnesium Alloys, Key Engineering Materials Vols. 447-448,pp 150-154, 2010.
  • 12. M. Arai, S. Sato, M. Ogawa and H.I Shikata: Chip Control in Finish Cutting of Magnesium Alloy, Journal of Materials Processing Technology 62, 341–344, 1996.
  • 13. M. H.Ruzi , M.Norhamidi, S.Abu Bakar, R.J.Khairur, M.N.Nor Hafiez, A.Sufizar and I.I.Mohd Halim Murtadhahadi: A Review Of Workability Of Wrought Magnesium Alloys, Advanced Manufacturing Research Group’09 Seminar 3, Advanced Manufacturing Research Group, 2009.
  • 14. M. Jönsson and D. Persson: “The influence of the microstructure on the atmospheric corrosion behavior of magnesium alloys AZ91D and AM50, Swerea KIMAB, Drottning Kristinas väg 48, SE-104 05 Stockholm, Sweden, 2010.
  • 15. N. Tomac, K. Tønnesen and T. Mikac: Study of Influence of Aluminium Content on Machinability of Magnesium Alloys, Strojarstvo 50 (6) 363 – 367, 2008.
  • 16. P. Lin, H. Zhou, N.Sun, W. Li, C. Wang, M. Wang, Q. Guo and W. Li: Influence of cerium addition on the resistance to oxidation of AM50 alloy prepared by rapid solidification, Corrosion Science 52, 416–421, 2010.
  • 17. P. Ozsváth, A. Szmejkál and J. Takács: Dry milling of magnesium based hybrid Materials, Transportation Engineering. Vol. 36, p. 73, 2008.
  • 18. S. Y. Lin, S. H. Yu and M. L. Wu: Effect of Different Coating Materials on Cutting Performance in High-Speed Machining of Mold Steels, Key Engineering Materials Vols. 364-366, pp 1026- 1031, 2008.
  • 19. Y.B. Guo and M. Salahshoor: Process mechanics and surface integrity by high-speed dry milling of biodegradable magnesium–calcium implant alloys, CIRP Annals - Manufacturing Technology 59, 151–154, 2010.
There are 19 citations in total.

Details

Other ID JA56UY36PP
Journal Section Articles
Authors

Birol Akyuz This is me

Publication Date July 23, 2016
Published in Issue Year 2011 Volume: 1 Issue: 3 - Volume: 1 Issue: 3

Cite

APA Akyuz, B. (2016). MACHINABILITY OF MAGNESIUM AND ITS ALLOYS. TOJSAT, 1(3), 31-38.
AMA Akyuz B. MACHINABILITY OF MAGNESIUM AND ITS ALLOYS. TOJSAT. July 2016;1(3):31-38.
Chicago Akyuz, Birol. “MACHINABILITY OF MAGNESIUM AND ITS ALLOYS”. TOJSAT 1, no. 3 (July 2016): 31-38.
EndNote Akyuz B (July 1, 2016) MACHINABILITY OF MAGNESIUM AND ITS ALLOYS. TOJSAT 1 3 31–38.
IEEE B. Akyuz, “MACHINABILITY OF MAGNESIUM AND ITS ALLOYS”, TOJSAT, vol. 1, no. 3, pp. 31–38, 2016.
ISNAD Akyuz, Birol. “MACHINABILITY OF MAGNESIUM AND ITS ALLOYS”. TOJSAT 1/3 (July 2016), 31-38.
JAMA Akyuz B. MACHINABILITY OF MAGNESIUM AND ITS ALLOYS. TOJSAT. 2016;1:31–38.
MLA Akyuz, Birol. “MACHINABILITY OF MAGNESIUM AND ITS ALLOYS”. TOJSAT, vol. 1, no. 3, 2016, pp. 31-38.
Vancouver Akyuz B. MACHINABILITY OF MAGNESIUM AND ITS ALLOYS. TOJSAT. 2016;1(3):31-8.