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Baril, E., Labelle, P., & Pekguleryuz, M. (2003). Elevated temperature Mg-Al-Sr: Creep resistance, mechanical properties, and microstructure. JOM, 55(11), 34–39.

Authors 3
  1. Eric Baril (first)
  2. Pierre Labelle (additional)
  3. Mihriban Pekguleryuz (additional)
References 19 Referenced 137
  1. M.O. Pekguleryuz and Eric Baril. “Creep Resistant Magnesium Diecasting Alloys Based on Alkaline Earth Elements,” Met. and Matls. Trans., 42 (2001), pp. 1258–1267. / Met. and Matls. Trans. by M.O. Pekguleryuz (2001)
  2. M.O. Pekguleryuz and Eric Baril, “Development of Creep Resistant Mg-Al-Sr Alloys,” Magnesium Technology 2001, ed. J. Hryn (Warrendale, PA: TMS, 2001), pp. 119–125. (10.1002/9781118805497.ch22) / Magnesium Technology 2001 by M.O. Pekguleryuz (2001)
  3. P. Labelle et al., “Heat Resistant Magnesium Alloys for Power-Train Applications.” SAE Technical Paper 2001-01-0424 (Detroit, MI: SAE, 2001). / Heat Resistant Magnesium Alloys for Power-Train Applications / SAE Technical Paper by P. Labelle (2001)
  4. M.O. Pekguleryuz, P. Labelle, and D. Argo, “Magnesium Die Casting Alloy AJ62x with Superior Creep Resistance, Ductility and Die Castability,” SAE Paper 2003-01-0190 (Detroit, MI: SAE 2003). / Magnesium Die Casting Alloy AJ62x with Superior Creep Resistance, Ductility and Die Castability / SAE Paper by M.O. Pekguleryuz (2003)
  5. A. Beck, The Technology of Magnesium and Its Alloys (London: F.A. Hughes & Co., 1940). / The Technology of Magnesium and Its Alloys by A. Beck (1940)
  6. M.S. Dargusch, G.L. Dunlop, and K. Pattersen, “Elevated-Temperature Creep and Microstructure of DiecastMg-Al Alloys,” Magnesium Alloys and Their Applications, ed. B.L. Mordike and K.U. Kainer (Wolfsburg, Germany: Werkstoff-Informationsgesellschaft, 1998), pp. 277–282. / Magnesium Alloys and Their Applications by M.S. Dargusch (1998)
  7. B.R. Powell et al. “Microstructure and Creep Behavior in AE42 Magnesium Die-Casting Alloy,” JOM, 54 (8) (2002), pp. 34–38. (10.1007/BF02711864) / JOM by B.R. Powell (2002)
  8. M.O. Pekguleryuz and M.M. Avedesian “Magnesium Alloying—Some Metallurgical Aspects,” Proc. Intl. Conf. Magnesium Alloys and Applications, ed. B.L. Mordike and F. Hehman (Germany: Materialkunde, 1992). / Proc. Intl. Conf. Magnesium Alloys and Applications by M.O. Pekguleryuz (1992)
  9. M.O. Pekguleryuz and J. Renaud, “Creep Resistance in Mg-Al-Ca Alloys,” Magnesium Technology 2000, ed. H. Kaplan, J. Hryn, and B. Clow (Warrendale, PA: TMS, 2000), pp. 279–284. (10.1002/9781118808962.ch38) / Magnesium Technology 2000 by M.O. Pekguleryuz (2000)
  10. J.J. Berkmortel et al., “Diecastability Assessment of Magnesium Alloys for High Temperature Applications Part 1 of 2,” SAE World Congress Paper 2000-01-1119 (Detroit, MI: SAE, 2000). / Diecastability Assessment of Magnesium Alloys for High Temperature Applications Part 1 of 2 / SAE World Congress Paper by J.J. Berkmortel (2000)
  11. P. Chartrand and A.D. Pelton, “Critical Evaluation and Optimization of the Thermodynamic Properties and Phase Diagrams of the Al-Mg, Al-Sr, Mg-Sr, and Al-Mg-Sr Systems,” Journal of Phase Equilibria, 15 (1994), pp. 591–605. (10.1007/BF02647620) / Journal of Phase Equilibria by P. Chartrand (1994)
  12. A.P. Druschitz and E.R. Showalter, “Bolt Load Compressive Stress Retention Testing of Magnesium Alloys,” SAE Paper 2003-01-0187 (Detroit, MI: SAE, 2003). / Bolt Load Compressive Stress Retention Testing of Magnesium Alloys / SAE Paper by A.P. Druschitz (2003)
  13. A.P. Druschitz et al., “Evaluation of Structural and High Temperature Magnesium Alloys,” SAE Paper 2002-01-0080 (Detroit, MI: SAE, 2002). / Evaluation of Structural and High Temperature Magnesium Alloys by A.P. Druschitz (2002)
  14. E. Landriault, private communication with author, Ecole Polytechnique de Montreal (July 2003).
  15. P. Villars, Pearson’s Handbook-Desk Edition: Crystallographic Data for Intermetallic Phases, (Materials Park, OH: ASM International, 1997). / Pearson’s Handbook-Desk Edition: Crystallographic Data for Intermetallic Phases by P. Villars (1997)
  16. J.L. Murray, Phase Diagram of Binary Magnesium Alloys (Metal Park, OH: ASM International, 1988). / Phase Diagram of Binary Magnesium Alloys by J.L. Murray (1988)
  17. E. Landriault, Master Degree Thesis (Montreal, Canada: École Polytechnique de Montréal, to be submitted).
  18. J. Goldstein et al., Scanning Electron Microscopy and X-Ray Microanalysis (New York: Plenum Press, 1984). / Scanning Electron Microscopy and X-Ray Microanalysis by J. Goldstein (1984)
  19. D.J. Sakkinen, “Physical Metallurgy of Magnesium Die Castings,” SAE Technical Publication No. 940779, (Warrendale, PA: SAE, 1994). / Physical Metallurgy of Magnesium Die Castings by D.J. Sakkinen (1994)
Dates
Type When
Created 18 years, 1 month ago (June 29, 2007, 2:39 p.m.)
Deposited 1 year, 6 months ago (Feb. 15, 2024, 10:34 a.m.)
Indexed 1 month, 2 weeks ago (July 8, 2025, 11:30 a.m.)
Issued 21 years, 9 months ago (Nov. 1, 2003)
Published 21 years, 9 months ago (Nov. 1, 2003)
Published Print 21 years, 9 months ago (Nov. 1, 2003)
Funders 0

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@article{Baril_2003, title={Elevated temperature Mg-Al-Sr: Creep resistance, mechanical properties, and microstructure}, volume={55}, ISSN={1543-1851}, url={http://dx.doi.org/10.1007/s11837-003-0207-7}, DOI={10.1007/s11837-003-0207-7}, number={11}, journal={JOM}, publisher={Springer Science and Business Media LLC}, author={Baril, Eric and Labelle, Pierre and Pekguleryuz, Mihriban}, year={2003}, month=nov, pages={34–39} }