Impurity effects in MoSi2 composites fabricated by self-propagating high temperature synthesis

被引:0
作者
Seo, Jung-Hye [1 ]
Lee, Youn-Seoung [1 ]
Rha, Sa-Kyun [2 ]
Jeon, Min-Seok [3 ]
Song, Jun-Kwang [3 ]
Jeong, Cheol-Weon [4 ]
Han, Dong-Bin [4 ]
机构
[1] Hanbat Natl Univ, Dep Informat Commun Engn, Taejon 305719, South Korea
[2] Hanbat Natl Univ, Dept Mat Engn, Taejon 305719, South Korea
[3] Korea Testing Lab, Machinery & Mat Ctr, Mat Testing Team, Seoul 22213, South Korea
[4] Winner Technol Co LTD, Pyongtaek City, South Korea
来源
JOURNAL OF CERAMIC PROCESSING RESEARCH | 2009年 / 10卷
关键词
MoSi2; Self-propagating high temperature synthesis; Fe impurity; XRD; XPS; FORMATION MECHANISMS; MO;
D O I
暂无
中图分类号
TQ174 [陶瓷工业]; TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
MoSi2 composites were fabricated by a self-propagating high temperature synthesis (SHS) reaction from a mixture of Mo and Si powders with various purities (including Fe impurity). In order to understand the impurity effects in the synthesized MoSi2 compound according to the change of source material purity, we investigated the chemical states, microstructures and phase structures of the composites by XPS, SEM and XRD. The granule size of the synthesized powders decreased according to an increase of the Fe impurity content (from < 100 ppm to < 400 ppm). The impurity Fe existed as Fe-silicide in the synthesized powders. The powders synthesized by the SHS method had a typical body-centered tetragonal MoSi2 structure and other structures such as Fe and/or Fe-silicides were not detected by XRD at all. However, the crystal size and average lattice spacing, d, decreased with an increase in the Fe content. From these results, we can suggest that the Fe impurity atoms substitute for Mo in the MoSi2 structure. Finally, we found that including the impurity in source materials is one of the important parameters in synthesized MoSi2 compound by SHS.
引用
收藏
页码:S91 / S95
页数:5
相关论文
共 50 条
  • [21] Mechanical Activation Assisted Self-Propagating High-Temperature Synthesis of HfB2–HfC Composites
    A. A. Zaitsev
    A. Yu. Potanin
    Yu. S. Pogozhev
    I. O. Filonenko
    E. A. Levashov
    [J]. International Journal of Self-Propagating High-Temperature Synthesis, 2023, 32 : 157 - 168
  • [22] Characterization of TiC/Mg Composites Fabricated by in-situ Self-propagating High-temperature Synthesis followed by Stir Casting Process
    Lee, Eunkyung
    Jo, Ilguk
    [J]. COMPOSITES RESEARCH, 2020, 33 (05): : 256 - 261
  • [23] Self-propagating high-temperature synthesis of nonstoichiometric wustite
    Hiramoto, Maki
    Okinaka, Noriyuki
    Akiyama, Tomohiro
    [J]. JOURNAL OF ALLOYS AND COMPOUNDS, 2012, 520 : 59 - 64
  • [24] Application of Self-Propagating High Temperature Synthesis for Environmental Protection
    Zhu Jianxin
    Chen Mengjun
    Zhang Fushen
    [J]. PROGRESS IN CHEMISTRY, 2009, 21 (7-8) : 1693 - 1704
  • [25] Influence of the W Content on the Characteristics of MoxW1-xSi2 Heating Elements Fabricated by Self-Propagating High-Temperature Synthesis
    Lee, Sung-Chul
    Cho, Myung-Yeon
    Lee, Dong-Won
    Kim, Yong-Nam
    Oh, Jong-Min
    Kim, Bae-Yeon
    [J]. ELECTRONIC MATERIALS LETTERS, 2019, 15 (03) : 383 - 390
  • [26] Producing Cu/ZrO2 Composites by Combining Mechanical Activation and Self-Propagating High-Temperature Synthesis
    Grigor'eva, T. F.
    Letsko, A. I.
    Talako, T. L.
    Tsybulya, S. V.
    Vorsina, I. A.
    Barinova, A. P.
    Il'yushchenko, A. F.
    Lyakhov, N. Z.
    [J]. COMBUSTION EXPLOSION AND SHOCK WAVES, 2011, 47 (02) : 174 - 178
  • [27] Producing Cu/ZrO2 composites by combining mechanical activation and self-propagating high-temperature synthesis
    T. F. Grigor’eva
    A. I. Letsko
    T. L. Talako
    S. V. Tsybulya
    I. A. Vorsina
    A. P. Barinova
    A. F. Il’yushchenko
    N. Z. Lyakhov
    [J]. Combustion, Explosion, and Shock Waves, 2011, 47
  • [28] Self-Propagating High-Temperature Synthesis of Complex Phases: The Example of TiC-Based Composites
    W. Ramdane
    [J]. International Journal of Self-Propagating High-Temperature Synthesis, 2024, 33 : 1 - 25
  • [29] Self-propagating high-temperature synthesis and liquid-phase sintering of TiC/Fe composites
    Persson, P
    Jarfors, AEW
    Savage, S
    [J]. JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 2002, 127 (02) : 131 - 139
  • [30] Luminescence of the corundum-containing Ti compounds composites by self-propagating high-temperature synthesis
    Xia, TD
    Liu, TZ
    Zhao, WJ
    Ma, BY
    Wang, TM
    [J]. PROGRESS IN SELF-PROPAGATING HIGH-TEMPERATURE SYNTHESIS, 2002, 217 : 71 - 76