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Spark Plasma Sintering of Fe-TiC Composite Powders
Yong-Heui Lee, Xuan-Khoa Hyunh, Ji Soon Kim
J Korean Powder Metall Inst. 2014;21(5):382-388.   Published online October 1, 2014
DOI: https://doi.org/10.4150/KPMI.2014.21.5.382
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AbstractAbstract PDF

Fe-TiC composite powder was fabricated by high-energy milling of powder mixture of (Fe, TiC) and (FeO, TiH2, C) as starting materials, respectively. The latter one was heat-treated for reaction synthesis of TiC phase after milling. Both powders were spark-plasma sintered at various temperatures of 680-1070°C for 10 min. with sintering pressure of 70 MPa and the heating rate of 50°C/min. under vacuum of 0.133 Pa. Density and hardness of the sintered compact was investigated. Fe-TiC composite fabricated from (FeO, TiH2, C) as starting materials showed better sintered properties. It seems to be resulted from ultra-fine TiC particle size and its uniform distribution in Fe-matrix compared to the simply mixed (Fe, TiC) powder.

Citations

Citations to this article as recorded by  
  • Comparative study of Ni-TaC composites via high-energy ball milling activation and spark plasma sintering: Reinforcement, densification, oxidation resistance, and mechanical property
    Bum-Soon Park, Jeong-Han Lee, Jae-Cheol Park, Hyun-Kuk Park
    Journal of Alloys and Compounds.2024; 984: 173900.     CrossRef
  • Effect of TiC particle size on high temperature oxidation behavior of TiC reinforced stainless steel
    Yeong-Hwan Lee, Sungmin Ko, Hyeonjae Park, Donghyun Lee, Sangmin Shin, Ilguk Jo, Sang-Bok Lee, Sang-Kwan Lee, Yangdo Kim, Seungchan Cho
    Applied Surface Science.2019; 480: 951.     CrossRef
  • Effect of TiC addition on surface oxidation behavior of SKD11 tool steel composites
    Seungchan Cho, Ilguk Jo, Heebong Kim, Hyuk-Tae Kwon, Sang-Kwan Lee, Sang-Bok Lee
    Applied Surface Science.2017; 415: 155.     CrossRef

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