期刊文献+

基于Al合金化的β-Mo(Si,Al)_2自蔓延高温合成 被引量:3

SHS of β-Mo(Si,Al)_2 based on alloying of Al
在线阅读 下载PDF
导出
摘要 为了研究添加Al粉对自蔓延高温合成β-Mo(Si,Al)2的影响,以Si、M0和Al粉为原料,按照化学式Mo(Si1-xAl)2(x分别取0、0.1、0.2、0.3、0.4,即Al取代Si物质的量依次为0、10%、20%、30%、40%)配料,采用自蔓延高温合成制备了不同Al含量的β-Mo(Si,Al)2,并利用X射线衍射仪和扫描电镜对合成产物进行了相组成和产物形貌分析。结果表明:Al的加入有利于自蔓延反应进行得更加完全,在自蔓延过程中,Al进入到MoSi2晶格中,发生Al、Si取代,当Al取代Si物质的量达到40%时,仍能实现Al的合金化,生成高温相β-Mo(Si,Al)2,并且随着Al的添加会使自蔓延合成产物的晶格发生严重变形。通过SEM观察发现:加入Al粉的合成产物形貌都呈现出小颗粒的聚集状态,且小颗粒为球形或接近等轴状,颗粒平均粒径为2—5μm,说明自蔓延合成产物的形貌继承了Mo粉的原始形貌,而与Al粉加入量没有明显关系。 β-Mo( Si ,Al ) 2 with different Al additions was prepared by self-propagating high-temperature synthesis (SHS) using Si, Mo and Al powders as starting materials, hatching according to Mo(Si1-xAlx)2 (x =0, 0.1,0. 2,0. 3 ,and 0.4,corresponding to Al substituting 0,10% ,20% ,30% ,and 40% of Si in molar ratio,respectively) in order to research effect of adding Al powder on SHS of β-Mo(Si,Al)2. The phase composition and morphology of the synthesized compounds were investigated by XRD and SEM. It is found that,the self-propagation reactions are prompted by introducing Al;Al enters in MoSi2 lattice to substitute Si during the SHS process;when Al substitution reaches 40% ,the alloying of Al can still be realized forming high temperature β-MoSi2 phase,and the lattices of synthesized compound deform seriously with the increase of Al addition. SEM analysis shows there are small particle aggregates in the synthesized compounds added with Al,and small particles are spheric or near equiaxed with 2-5 μm of average size,which means the morphology of the SHS products is similar with the original morphology of Mo powders,independent of Al addition.
出处 《耐火材料》 CAS 北大核心 2014年第3期184-187,共4页 Refractories
关键词 β-Mo(Si Al)2 MOSI2 自蔓延合成 合金化 Al粉 β-Mo ( Si, Al ) 2 molybdenum disiticide self-propagation high-temperature synthesis alloying aluminum powder
  • 相关文献

参考文献12

  • 1Chrysanthou A,Jenkins R C ,Whiting M J,et al. A study of the com bustion synthesis of MoSi2 and MoSi2 - matrix composites [ J ] . J Mater Sei, 1996,31 ( 16 ) :4221 - 4226.
  • 2Woolman J N, Petrovic J J, Munir Z A. Microalloying of molybdenum disilicide with magnesium through mechanical and field activation [ J]. J Mater Sci ,2004,39 (16) :5037 - 5043.
  • 3Raghavan V. Al - Mo - Si ( Aluminum - Molybdenum - Silicon ) [J]. J Phase Equilib Diff,2012,33(4) :329 -333.
  • 4Qiao Yingjie, Zhang Hexin, Hong Changqing, et al. Phase stability, electronic structure and mechanical properties of molybdenum disili- cide: a first-prlnciples investigation [ J ]. J Phys D: Appl Phys, 2009,42 (10) :1 -10.
  • 5Ingemarsson L, Hellstrfim K, Canovic S, et al. Oxidation behavior of a Mo(Si,Al)2 composite at 900 - 1600 ℃ in dry air[J]. J Mater Sci,2013,48 (4) :1511 - 1523.
  • 6Lynda M, Benol't M, Marle'ne C, et al. Effect of Al addition on the microstructure and low-temperature reactivity to oxygen of pre- formed MoSi2 [ J ]. Mater Sci,2012,47 ( 19 ) :6792 - 6800.
  • 7Stergiou A, Tsakiropoulos P, Brown A. The intermediate and high- temperature oxidation behavior of Mo( Si1-xAlx )2 intermetallic alloys[ J]. Intermetallics, 1997,5 ( 1 ) :69 - 81.
  • 8Hasani S, Panjepour M, Shamanian M. A study of the effect of alu- minum on MoSi2 formation by self-propagation high-temperature synthesis[ J]. J Alloy Compd,2010, 502 (1) :80- 86.
  • 9Yeh C L, Chen W H. Combustion synthesis of MoSi2 and MoSi2 - MosSi3 composites[J]. J Alloy Compd,2007, 438 (1 -2) :165 -170.
  • 10Zhou Ying, Wei Caili, Ye Guotian, et al. The effects of panicle size and morphology of raw materials on the properties of MoSi2 syn- thesized by SHS[ C]//Chemical, Mechanical and Materials Engi- neering II , Melbourne, Australia,2013 : 213 - 218.

同被引文献20

引证文献3

二级引证文献3

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部