期刊文献+

Effects of SiC amount on phase compositions and properties of Ti_3SiC_2-based composites 被引量:2

Effects of SiC amount on phase compositions and properties of Ti_3SiC_2-based composites
下载PDF
导出
摘要 The phase compositions and properties of Ti3SiC2-based composites with SiC addition of 5%-30% in mass fraction fabricated by in-situ reaction and hot pressing sintering were studied. SiC addition effectively prevented TiC synthesis but facilitated SiC synthesis. The Ti3SiC2/Ti C-SiC composite had better oxidation resistance when SiC added quantity reached 20% but poorer oxidation resistance with SiC addition under 15% than Ti3SiC2/TiC composite at higher temperatures. There were more than half of the original SiC and a few Ti3SiC2 remaining in Ti3SiC2/Ti C-SiC with 20% SiC addition, but all constituents in Ti3Si2/TiC composite were oxidized after 12 h in air at 1500 °C. The oxidation scale thickness of TS30, 1505.78 μm, was near a half of that of T,2715 μm, at 1500 °C for 20 h. Ti3SiC2/Ti C composite had a flexural strength of 474 MPa, which was surpassed by Ti3SiC2/TiC-SiC composites when SiC added amount reached 15%. The strength reached the peak of 518 MPa at 20% SiC added amount. The phase compositions and properties of Ti3SiC2-based composites with SiC addition of 5%-30% in mass fraction fabricated by in-situ reaction and hot pressing sintering were studied. SiC addition effectively prevented TiC synthesis but facilitated SiC synthesis. The Ti3SiC2/Ti C-SiC composite had better oxidation resistance when SiC added quantity reached 20% but poorer oxidation resistance with SiC addition under 15% than Ti3SiC2/TiC composite at higher temperatures. There were more than half of the original SiC and a few Ti3SiC2 remaining in Ti3SiC2/Ti C-SiC with 20% SiC addition, but all constituents in Ti3Si2/TiC composite were oxidized after 12 h in air at 1500 °C. The oxidation scale thickness of TS30, 1505.78 μm, was near a half of that of T,2715 μm, at 1500 °C for 20 h. Ti3SiC2/Ti C composite had a flexural strength of 474 MPa, which was surpassed by Ti3SiC2/TiC-SiC composites when SiC added amount reached 15%. The strength reached the peak of 518 MPa at 20% SiC added amount.
出处 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第1期14-22,共9页 中南大学学报(英文版)
基金 Project(51302206)supported by the National Natural Science Foundation of China Project(2013JK0925)supported by Shaanxi Provincial Department of Education,China Project(SKLSP201308)supported by the State Key Laboratory of Solidification Processing in Northwestern Polytechnical University,China Project supported by the State Scholarship Fund,China
关键词 in-situ reaction composites oxidation mechanical properties 抗氧化性能 钛碳化硅 复合材料 相组成 碳化硅合成 抗弯强度 SiC 氧化皮厚度
  • 相关文献

参考文献17

  • 1BARSOUM M W. The MN+IAXN phases: A new class of solids, thermodynamically stable nanolaminates [J]. Progress in Solid State Chemistry, 2000, 28: 201-281.
  • 2HO-DUC L H. Synthesis and characterization of the properties of Ti3SiC2/SiC and Ti3SiC2/TiC composites [D]. Philadelphia: Drexel University, 2002.
  • 3KISI E H, CROSSLEY J A A, MYHRA S, BARSOUM M W. Structure and crystal chemistry of Ti3SiC2 [J]. Journal of Physics andChemistry of Solids, 1998, 59(9): 1437 1443.
  • 4SEDLACEK J, GALUSEK D, RIEDEL R, HOFFMANN M J. Sinter-HIP of polyrner-derived A1203 SiC composites with high SiC contents [J]. Materials Letters, 2011, 65(15/16): 2462 2465.
  • 5KIM J I, KIM W J, CHO! D J, PARK J Y, RYU W S. Design of a C/SiC functionally graded coating for the oxidation protection of C/C composites [J]. Carbon, 2005, 43:1749-1757.
  • 6ZHANG J, WANG L, SHI L, JIANG W, CHEN L. Rapid fabrication of Ti3SiCz-SiC nanocomposite using the spark plasma sintering-reactive synthesis (SPS-RS) method [J]. Scripta Materialia, 2007, 56: 241-244.
  • 7SUN Z, ZHOU Y, LI M. Oxidation behavior of Ti3SiC2-based ceramic at 900-1300 C in air [J]. Corrosion Science, 2001, 43: 1095-1109.
  • 8TONG X, OKANO T, ISEKI T, YANO T. Synthesis and high temperature mechanical properties of Ti3SiC2/SiC composite [J]. Journal of Materials Science, 1995, 30: 3087-3090.
  • 9BARSOUM M W, HO-DUC L H, RADOVIC M, EL-RAGHY T. Long time oxidation study of Ti3SiC2, Ti3SiC2/SiC and Ti3SiCjTiC composites in air [J]. Journal of the Electrochemical Society, 2003, 150: 166-175.
  • 10ZHANG J, WANG L, JIANG W, CHEN L. High temperature oxidation behavior and mechanism of Ti3SiC2 SiC nanncomposites in air [J]. Composites Science and Technology, 2008, 68: 1531-1538.

同被引文献32

引证文献2

二级引证文献8

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