+高级检索
TaC-SiC陶瓷的制备与表征
DOI:
作者:
作者单位:

国防科学技术大学新型陶瓷纤维及其复合材料重点实验室,国防科学技术大学新型陶瓷纤维及其复合材料重点实验室,国防科学技术大学新型陶瓷纤维及其复合材料重点实验室,国防科学技术大学新型陶瓷纤维及其复合材料重点实验室

作者简介:

通讯作者:

中图分类号:

基金项目:


Synthesis, Ceramic Conversion and Microstructure Analysis of TaC-SiC Ceramics by Hybrid Precursor Route
Author:
Affiliation:

Science and Technology on Advanced Ceramic Fibres and Composites Laboratory,National University of Defense Technology,Science and Technology on Advanced Ceramic Fibres and Composites Laboratory,National University of Defense Technology,Science and Technology on Advanced Ceramic Fibres and Composites Laboratory,National University of Defense Technology,Science and Technology on Advanced Ceramic Fibres and Composites Laboratory,National University of Defense Technology

Fund Project:

  • 摘要
  • |
  • 图/表
  • |
  • 访问统计
  • |
  • 参考文献
  • |
  • 相似文献
  • |
  • 引证文献
  • |
  • 资源附件
  • |
  • 文章评论
    摘要:

    TaC-SiC陶瓷具有优异的耐超高温性能和良好的耐高温氧化性能,是一种可满足航空航天和高性能武器装备应用要求的理想陶瓷材料之一。本文以纳米钽粉和聚碳硅烷为原料,采用超声和球磨混合方式按照钽粉质量分数分别为5%、10%、25%、55%制备了不同陶瓷先驱体。通过SEM、TG、IR、XRD、EDS等表征先驱体的组成、结构以及裂解过程。结果表明:纳米钽粉均匀分散在聚碳硅烷中;先驱体的陶瓷产率随着Ta含量的增加而增加;1073 K时先驱体基本无机化,Ta开始转变为TaC,1673 K时,金属钽完全转化为TaC;先驱体转化得到的陶瓷具有分布均匀、组成稳定等优点。

    Abstract:

    TaC-SiC, one member of ultrahigh-temperature ceramics (UHTCs), is potentially useful as structural materials in aerospace engineering and hypersonic flight vehicles. In this paper, the synthesis and characterization of nano-tantalopolycarbosilanes (TS) and their transformation into ceramic materials are reported. The TS-5, TS-10, TS-25, and TS-55 hybrid precursors were prepared by using nanometer tantalum powders (nano-Ta) and polycarbonsilane (PCS), according to the quality of tantalum powders and PCS at 5wt%, 10wt%, 25wt%, 55wt%, respectively, via ultrasonic and ball mill mixing method. The composition, structure, uniformity and pyrolysis process of the obtained precursors were investigated by infrared (IR), thermogravimetric (TGA), element analysis, SEM characterization, and so on. The results show that nano-Ta were dispersed uniformly in PCS. The ceramic yield of the precursors increased gradually with increase of nano-Ta proportion. The inorganic conversion was almost completed at 1073 K and TaC crystal appeared, nano-Ta was completely converted into TaC at 1673 K. As the temperature increases, the crystallization of TaC is more and more sharp, which indicates the growth of TaC grain. The non-oxygen structure, high ceramic yield, and uniform composition enable the as-received hybrid precursor as promising materials to prepare high performance ultrahigh-temperature ceramics.

    参考文献
    相似文献
    引证文献
引用本文

程军,张继周,王小宙,王军. TaC-SiC陶瓷的制备与表征[J].稀有金属材料与工程,2018,47(S2):108~111.[Cheng Jun, Zhang Ji-zhou, Wang Xiao-zhou, Wang Jun. Synthesis, Ceramic Conversion and Microstructure Analysis of TaC-SiC Ceramics by Hybrid Precursor Route[J]. Rare Metal Materials and Engineering,2018,47(S2):108~111.]
DOI:[doi]

复制
文章指标
  • 点击次数:
  • 下载次数:
  • HTML阅读次数:
  • 引用次数:
历史
  • 收稿日期:2017-12-04
  • 最后修改日期:2017-12-04
  • 录用日期:2018-02-01
  • 在线发布日期: 2018-11-01
  • 出版日期: