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Articles

Preparation and mechanical properties of bulk ultrafine (W0.5Al0.5)C0.65 with minor Fe binder by reactive hot-pressing

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Pages 249-256 | Received 24 Oct 2016, Accepted 03 Jan 2017, Published online: 26 Jan 2017

References

  • Yan JM, Ma XF, Zhao W, et al. Synthesis, crystal structure, and density of (W1−xAlx)C. J Solid State Chem. 2004;177(7):2265–2270.
  • Liu JW, Ma XF, Tang HG, et al. The research on the binder phase for the (W0.5Al0.5)C0.5 system. Int J Refract Met H. 2011;29(4):435–440.
  • Liu JW, Ma XF, Tang HG, et al. Preparation, mechanical properties and microstructure of novel (W0.5Al0.5)C0.5–Fe–Ni composite by mechanical alloying and sintering. Int J Refract Met H. 2012;34:41–46.
  • Kim HC, Shon IJ, Garay JE, et al. Consolidation and properties of binderless sub-micron tungsten carbide by field-activated sintering. Int J Refract Met H. 2004;22(6):257–264.
  • Qiao ZH, Ma XF, Zhao W, et al. Bulk ultrafine binderless (W0.4Al0.6)C prepared by high pressure sintering. J Alloy Compd. 2008;453(1-2):382–385.
  • Kim HC, Shon IJ, Yoon JK, et al. One step synthesis and densification of ultra-fine WC by high-frequency induction combustion. Int J Refract Met H. 2006;24(3):202–209.
  • Cha SI, Hong SH. Microstructures of binderless tungsten carbides sintered by spark plasma sintering process. Mat Sci Eng a-Struct. 2003;356(1-2):381–389.
  • Correa EO, Santos JN, Klein AN. Microstructure and mechanical properties of WC-Ni-Al based cemented carbides developed for engineering applications. Int J Mater Res. 2011;102(11):1369–1373.
  • Yan JM, Ma XF, Zhao W, et al. Crystal structure and carbon vacancy hardening of (W0.5Al0.5)C1−x prepared by a solid-state reaction. Chemphyschem. 2005;6(10):2099–2103.
  • Huang B, Chen LD, Bai SQ. Bulk ultrafine binderless WC prepared by spark plasma sintering. Scripta Mater. 2006;54(3):441–445.
  • Fang ZZ, Wang X, Ryu T, et al. Synthesis, sintering, and mechanical properties of nanocrystalline cemented tungsten carbide – a review. Int J Refract Met H. 2009;27(2):288–299.
  • Kim BR, Woo KD, Doh JM, et al. Mechanical properties and rapid consolidation of binderless nanostructured tantalum carbide. Ceram Int. 2009;35(8):3395–3400.
  • Shon IJ, Kim BR, Doh JM, et al. Consolidation of binderless nanostructured titanium carbide by high-frequency induction heated sintering. Ceram Int. 2010;36(6):1797–1803.
  • Kim H-C, Shon I-J, Jeong I-K, et al. Rapid sintering of ultra fine WC and WC-Co hard materials by high-frequency induction heated sintering and their mechanical properties. Met Mater-Int. 2007;13(1):39–45.
  • Kim HC, Shon IJ, Yoon JK, et al. Consolidation of ultra fine WC and WC–Co hard materials by pulsed current activated sintering and its mechanical properties. Int J Refract Met H. 2007;25(1):46–52.
  • Zhang GJ, Deng ZY, Kondo N, et al. Reactive Hot Pressing of ZrB2-SiC Composites. J Am Ceram Soc. 2000;83(9):2330–2332.
  • Zhang GJ, Yang JF, Ando M, et al. Reactive hot pressing of alumina-silicon carbide nanocomposites. J Am Ceram Soc. 2004;87(2):299–301.
  • Chamberlain AL, Fahrenholtz WG, Hilmas GE. Low-temperature densification of zirconium diboride ceramics by reactive hot pressing. J Am Ceram Soc. 2006;89(12):3638–3645.
  • Liu J, Ma X, Tang H, et al. Preparation, microstructure and mechanical properties of bulk (W0.5Al0.5)C0.65 without binder phase by reactive hot-pressing. J Alloy Compd. 2016;679:149–154.
  • Tang HG, Ma XF, Zhao W, et al. Preparation of W–Al alloys by mechanical alloying. J Alloy Compd. 2002;347(1-2):228–230.
  • Zhang FL, Wang CY, Zhu M. Nanostructured WC/Co composite powder prepared by high energy ball milling. Scripta Mater. 2003;49(11):1123–1128.
  • Arató P, Bartha L, Porat R, et al. Solid or liquid phase sintering of nanocrystalline WC/Co hardmetals. Nanostruct Mater. 1998;10(2):245–255.

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