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Original Research Papers

Influence of TiC, TiN and TiC(N) additions on sintering and mechanical properties of injection moulded titanium based metal matrix composites

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Pages 30-35 | Received 09 Jan 2014, Accepted 24 Apr 2014, Published online: 29 Jul 2014

References

  • German RM and Bose A: ‘Injection molding of metals and ceramics’, 17–25; 1997, New Jersey, MPIF.
  • German RM: ‘Powder injection molding’, 7–10; 1990, New Jersey, MPIF.
  • Xu Y and Nomura H: ‘Homogenizing analysis for sintering of bio-titanium alloy (Ti-5Al-2.5Fe) in MIM process’, J. Jpn Soc. Powder Powder Metall., 2001, 48, 1089–1096.
  • Gerling R and Schimansky FP: ‘Prospects for metal injection moulding using a gamma titanium aluminide based alloy powder’, Mater. Sci. Eng., 2002, A329–A331, 45–49.
  • Gulsoy HO, Gunay V, Baykara T and German RM: ‘Injection molding of mechanical alloyed Ti-Fe-Zr powder’, Mater. Trans., 2012, 53, 1100–1105.
  • Adam G, Zhang DL, Liang J and Macrae I: ‘A novel process for lowering the cost of titanium’, Adv. Mater. Res., 2007, 29–30, 147–152.
  • Lutjering G and Williams JC: ‘Titanium’, 2nd edn, 90–101; 2007, Berlin/Heidelberg/New York, Springer.
  • Froes FH: ‘Advances in titanium metal injection molding’, Pow. Metall. Met. Ceram., 2007, 46, 303–310.
  • Wanjara P, Yue S, Drew R, Root J and Donaberger R: ‘Titanium-based composites produced by powder metallurgy’, Key Eng. Mater., 1997, 127, (3), 415–422.
  • Romero F, Amigo V, Salvador MD and Martinez E: ‘Mechanical and microstructural properties of titanium matrix composites reinforced by TiN particles’, Mater. Sci. Forum, 2007, 534–536, 825–828.
  • Li YC, Hodgson PD and Wen CE: ‘Particulate-reinforced titanium composıites for orthopaedic implants’, Adv. Heterog. Mater. Mech., 2011, 1131–1135.
  • Loh NH, Tor SB and Khor KA: ‘Production of metal matrix composite part by powder injection molding’, J. Mater. Pro. Technol., 2001, 108, 398–407.
  • Morsi K, Patel VV, Naraghi S and Garay JE: ‘Processing of titanium–titanium boride dual matrix composites’, J. Mater. Proces. Technol., 2008, 196, 236–242.
  • Kondoh K., Threrujirapapong T., Bin S., Imai H., Li S.F., Umeda J. and Fugetsu B., ‘Multi-walled carbon nanotubes reinforced titanium composites via powder metallurgy process’, Key Eng. Mater., 2012, 520, 261–268.
  • Anoop CR and Singh P: ‘Characterization of P/M processed Ti/TiCP composites’, Proc. International Symposium of Research Students on ‘Material science and engineering’, Chennai, India, December 2004, IIT, 5–17.
  • Mukherjee SK, Kumar A and Upadhyaya GS: ‘Anodic polarization study of sintered 434L ferritic stainless-steel and its particulate composites’, Powder Metall. Int., 1985, 17, 172–175.
  • Shen X, Zhang Z, Weı S, Wang F and Lee S: ‘Microstructures and mechanical properties of the in situ TiB–Ti metal–matrix composites synthesized by spark plasma sintering process’, J. Alloy. Compos., 2011, 509, 7692–7696.
  • Alman DE and Hawk JA: ‘The abrasive wear of sintered titanium matrix–ceramic particle reinforced composites’, Wear, 1999, 225–229, 629–639.
  • Bolton JD and Gant A: ‘Phase reactions and chemical-stability of ceramic carbide and solid lubricant particulate additions within sintered high-speed steel matrix’, Int. J. Powder Metall., 1993, 36, 267–274.
  • Lima WM, Velasco F and Torralba JM: ‘Stainless steel matrix composites reinforced with AlCr2’, Mater. Sci. Forum, 1999, 299, 431–436.
  • Lal S and Upadhyaya GS: ‘Effect of copper and bronze addition on the sintered properties of 316L austenitic stainless-steel and its composites’, Powder Metall. Int., 1988, 20, 35–38.
  • Feng H, Zhou Y, Jıa D and Meng Q: ‘Microstructure and mechanical properties of in situ TiB reinforced titanium matrix composites based on Ti–FeMo–B prepared by spark plasma sintering’, Compos. Sci. Technol., 2004, 64, 2495–2500.
  • Nardone VC, Strife JR and Prewo KM: ‘Microstructurally toughened particulate-reinforced aluminum matrix composites’, Mater. Trans. A, 1991, 22A, 171–182.
  • Fujii H, Fujisawa K, Takahashi K and Yamazaki T: ‘Development of low cost powder metallurgy process of titanium alloy products’, Nippon Steel Technical Rep., no. 85, 2002.
  • Arockiasamy A, German RM, Heaney DF, Wang PT, Horstemeyer MF, King RL and Adcock B: ‘Effect of additives on sintering response of titanium by powder injection moulding’, Powder Metall., 2011, 54, 420–426.

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