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Alexandrovskii S.V. 1 Article
Synthesis of Ultrafine Titanium Carbide Powder by Novel Thermo-Reduction Process
Alexandrovskii S.V.
J Korean Powder Metall Inst. 2003;10(6):390-394.
DOI: https://doi.org/10.4150/KPMI.2003.10.6.390
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AbstractAbstract PDF
Ultra fine titanium carbide particles were synthesized by novel metallic thermo-reduction process. The vaporized TiC1_4+CCl_4 gases were reacted with liquid magnesium and the fine titanium carbide particles were then produced by combining the released titanium and carbon atoms. The vacuum treatment was followed to remove the residual phases of MgC1_2 and excess Mg. The stoichiometry, microstructure, fixed and carbon contents and lattice parameter were investigated in titanium carbide powders produced in various reaction parameters.

Citations

Citations to this article as recorded by  
  • Direct synthesis of zirconium powder by magnesium reduction
    Dong-Won Lee, Jung-Yeul Yun, Sung-Won Yoon, Jei-Pil Wang
    Metals and Materials International.2013; 19(3): 527.     CrossRef
  • Study on synthesis of Zr–Ti alloy powder using molten magnesium
    D.-W. Lee, Y.-K. Baek, W.-J. Lee, J.-P. Wang
    Materials Research Innovations.2013; 17(sup2): s113.     CrossRef
  • Quantitative Study on the Refinement Behaviors of TiC Powders Produced by Mechanical Milling Under Different Impact Energy
    Sung-Mo Hong, Eun-Kwang Park, Kyeong-Yeol Kim, Jin-Ju Park, Min-Ku Lee, Chang-Kyu Rhee, Jin-Kyu Lee, Young-Soon Kwon
    Journal of Korean Powder Metallurgy Institute.2012; 19(1): 32.     CrossRef
  • Synthesis of Zr-Ti Alloy Powder by Magnesium Reduction
    Dong-Won Lee, Geun-Tae Park, Tae-Soo Lim, Hye-Moon Lee, Ji-Hun Yu
    Journal of Korean Powder Metallurgy Institute.2011; 18(4): 359.     CrossRef

Journal of Powder Materials : Journal of Powder Materials