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Porous titanium processed by powder injection moulding of titanium hydride and space holders

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References

  • Imwinkelried T.: ‘Mechanical properties of open-pore titanium foam’, J. Biomed. Mater. Res. A, 2007, 81, 964–970
  • Carlsson L. V., Macdonald W., Jacobsson C. M. and Albrektson T.: ‘Osseointegration principles in orthopedics: basic research and clinical applications’, in ‘Biomaterials in orthopedics’, (ed: Yaszemski M. J. et al.), 223–238; 2004, New York, Marcel-Dekker.
  • Geetha M., Singh A. K., Asokamani R. and Gogia A. K.: ‘Titanium based biomaterials, the ultimate choice for orthopaedic implants – a review’, Prog. Mater. Sci., 2009, 54, 397–425.
  • Bansiddhi A. and Dunand D. C.: ‘Shape-memory NiTi foams produced by replication of NaCl space-holders’, Acta Biomater., 2008, 4, 1996–2007.
  • Köhl M., Habijan T., Bram M., Buchkremer H.-P., Stöver D. and Köller M.: ‘Powder metallurgical near-net-shape fabrication of porous NiTi shape memory alloys for use as long-term implants by the combination of the metal injection molding process with the space-holder technique’, Adv. Eng. Mater., 2009, 11, 959–968.
  • Tuncer N., Bram M., Buchkremer H. P., ‘Effects of production method and space holder material on microstructure of porous titanium’, Proc. Euro PM2012, 211–216; 2012, Shrewsbury, EPMA.
  • Sharma M., Gupta G. K., Modi O. P. and Prasad B. K.: ‘PM processed titanium foam: influence of morphology and content of space holder on microstructure and mechanical properties’, Powder Metall., 2013, 56, 55–60.
  • Reig L., Amigo V., Busquets D. and Calero J. A.: ‘Stiffness variation of porous titanium developed using space holder method’, Powder Metall., 2011, 54, 389–392.
  • Carreño-Morelli E., Bidaux J.-E., Rodriguez-Arbaizar M., Girard H. and Hamdan H., ‘Production of titanium grade 4 components by powder injection moulding of titanium hydride’, Powder Metall., 2014, 57, 89–92.
  • Niinomi M., Hattori T. and Niwa S.: ‘Material characteristics and biocompatibility of low rigidity titanium alloys for biomedical applications’, in ‘Biomaterials in orthopedics’, (ed: Yaszemski M. J. et al.), 41–62; 2004, New York, Marcel-Dekker.
  • Donachie M. J.: ‘Titanium, a technical guide’, 2nd edn, 20; 2007, Materials Park, OH, ASM International.

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