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Research Papers

Effects of current on nanoparticle reinforced magnesium alloy welding joints

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Pages 686-692 | Received 11 Apr 2015, Accepted 30 May 2015, Published online: 18 Jun 2015

References

  • Mordike B. L. and Ebert T.: ‘Magnesium: properties—applications—potential’, Mater. Sci. Eng. A, 2001, A302, 37–45.
  • Li N. and Zheng Y. F.: ‘Novel magnesium alloys developed for biomedical application: a review’, J. Mater. Sci. Technol., 2013, 29, 489–502.
  • Kim J. J. and Han D. S.: ‘Recent development and applications of magnesium alloy in the hyundai and kia motors corporation’, Mater. Trans., 2008, 49, 894–897.
  • Yang Z. M., Yan H. G., Chen J. H., Su B., Zhang G. H. and Zhao Q.: ‘Microstructural characterization and liquation behavior of laser welded joint of fine grained AZ91 magnesium alloy thin sheets’, Sci. Technol. Weld. Joining, 2015, 20, 27–34.
  • Chi C. T., Chao C. G., Liu T. F. and Wang C. C.: ‘Optimal parameters for low and high voltage electron beam welding of AZ series magnesium alloys and mechanism of weld shape and pore formation’, Sci. Technol. Weld. Joining, 2008, 13, 199–211.
  • Cao X. and Jahazi M.: ‘Effect of tool rotational speed and probe length on lap joint quality of a friction stir welded magnesium alloy’, Mater. Des., 2011, 32, 1–11.
  • Chern T. S., Tseng K. H. and Tsai H. L.: ‘Study of the characteristics of duplex stainless steel activated tungsten inert gas welds’, Mater. Des., 2011, 32, 255–263.
  • Li S. Z., Shen J., Cao Z. M., Wang L. Z. and Xu N.: ‘Effects of mix activated fluxes coating on microstructures and mechanical properties of tungsten inert gas welded AZ31 magnesium alloy joints’, Sci. Technol. Weld. Joining, 2012, 17, 467–475.
  • Shen J., Wang L. Z., Peng D. and Wang D.: ‘Effects of CaF2 coating on the microstructures and mechanical properties of tungsten Inert gas welded AZ31 magnesium alloy joints’, Metall. Mater. Trans. A, 2012, 43A, 4397–4405.
  • Liu L., Zhang Z., Song G. and Wang L.: ‘Mechanism and microstructure of oxide fluxes for gas tungsten arc welding of magnesium alloy’, Metall. Mater. Trans. A, 2007, 38A, 649–658.
  • Xu Y., Dong Z., Wei Y. and Yang C.: ‘Marangoni convection and weld shape variation in A-TIG welding process’, Theor. Appl. Fract. Mech., 2007, 48, 178–186.
  • Morisada Y., Fujii H. and Xukun N.: ‘Development of simplified active flux tungsten inert gas welding for deep penetration’, Mater. Des., 2014, 54, 526–530.
  • Rashad M., Pan F., Asif M. and Ullah A.: ‘Improved mechanical properties of magnesium–graphene composites with copper–graphene hybrids’, Mater. Sci. Technol., 2014, DOI: 10.1179/1743284714Y.0000000726.
  • Sankaranarayanan S., Habibi M. K., Jayalakshmi S., Jia Ai K., Almajid A. and Gupta M.: ‘Nano-AlN particle reinforced Mg composites: microstructural and mechanical properties’, Mater. Sci. Technol., 2015, 31, 1122–1131.
  • Liu L. and Sun H.: ‘Study of flux assisted TIG welding of magnesium alloy with SiC particles in flux’, Mater. Res. Innovations, 2008, 12, 47–51.
  • Shen J., Liu K., Zhai D. J., Wang D., Xu N. and Jiang C. J.: ‘Effects of SiC ceramic particles on microstructures and mechanical properties of gas tungsten arc welded AZ31magnesium alloy with Cr2O3 flux coating’, Sci. Technol. Weld. Joining, 2013, 18, 11–18.
  • Shen J., Liu K., Li Y., Li S. Z. and Wen L. B.: ‘Effects of fluxes on distribution of SiC particles and microstructures and mechanical properties of nanoparticles strengthening A-TIG (NSA-TIG) welded magnesium alloy joints’, Sci. Technol. Weld. Joining, 2013, 18, 404–413.
  • Shen J., Li S. Z., Zhai D. J., Wen L. B., Liu K. and Dai Y. C.: ‘Effects of SiC on the strengthening activated tungsten inert gas (SA-TIG) welded of magnesium alloy’, Mater. Manuf. Processes, 2013, 28, 1240–1247.
  • Liang G. L. and Yuan S. Q.: ‘Study on the temperature measurement of AZ31B magnesium alloy in gas tungsten arc welding’, Mater. Lett., 2008, 62, 2282–2284.
  • Braszczyńska K. N., Lityńska L., Zyska A. and Baliga W.: ‘TEM analysis of the interfaces between the components in magnesium matrix composites reinforced with SiC particles’, Mater. Chem. Phys., 2003, 81, 326–328.
  • Easton M. A., Schiffl A., Yao J. Y. and Kaufmann H.: ‘Grain refinement of Mg–Al (–Mn) alloys by SiC additions’, Scr. Mater., 2006, 55, 379–382.
  • Heiple C. and Roper J.: ‘Effect of selenium on GTAW fusion zone geometry’, Weld. J., 1981, 60, 143.
  • Kou S.: ‘Welding metallurgy’, 1987, Cambridge, Cambridge University Press.
  • Camel D., Tison P. and Favier J.: ‘Marangoni flow regimes in liquid metals’, Acta Astronautica, 1986, 13, 723–726.
  • Kou S.: ‘Transport phenomena and materials processing’, ISBN 0-471-07667-8 696; 1996, New York, Wiley-VCH.
  • Zhang J., Fan Z., Wang Y. and Zhou B.: ‘Hypereutectic aluminium alloy tubes with graded distribution of Mg2Si particles prepared by centrifugal casting’, Mater. Des., 2000, 21, 149–153.
  • Mabuchi M. and Higashi K.: ‘Strengthening mechanisms of Mg-Si alloys’, Acta Mater., 1996, 44, 4611–4618.
  • Arsenault R.: ‘The strengthening of aluminum alloy 6061 by fiber and platelet silicon carbide’, Mater. Sci. Eng., 1984, 64, 171–181.
  • Luster J., Thumann M. and Baumann R.: ‘Mechanical properties of aluminium alloy 6061–Al2O3 composites’, Mater. Sci. Technol., 1993, 9, 853–862.
  • R. M. Aikin Jr. and Christodoulou L.: ‘The role of equiaxed particles on the yield stress of composites’, Scr. Metall. Mater., 1991, 25, 9–14.
  • Zhang Z. and Chen D.: ‘Contribution of Orowan strengthening effect in particulate-reinforced metal matrix nanocomposites’, Mater. Sci. Eng. A, 2008, A483, 148–152.
  • Gao L., Chen R. and Han E.: ‘Microstructure and strengthening mechanisms of a cast Mg–1.48 Gd–1.13 Y–0.16 Zr (at-%) alloy’, J. Mater. Sci., 2009, 44, 4443–4454.
  • Habibnejad-Korayem M., Mahmudi R. and Poole W. J.: ‘Enhanced properties of Mg-based nano-composites reinforced with Al2O3 nano-particles’, Mater. Sci. Eng. A, 2009, A519, 198–203.

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