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自蔓延高温合成多孔TiB2-TiC复相陶瓷
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中国矿业大学化工学院,中国矿业大学材料科学与工程学院,中国矿业大学材料科学与工程学院,中国矿业大学材料科学与工程学院

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国家自然科学(51574241);国家自然科学基金中瑞国际合作与交流项目 (51611130064);中国矿业大学第八批创新团队(2015QN004)


Self-propagation High-temperature Synthesis of Porous TiB2-TiC Multiphase Ceramics
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School of Chemical engineering and Technology,China University of Mining and Technology,School of Material Science and Engineering,China University of Mining and Technology,School of Material Science and Engineering,China University of Mining and Technology,School of Material Science and Engineering,China University of Mining and Technology

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    摘要:

    以Ti和B4C粉末为原料,采用自蔓延高温合成技术(SHS)制备了Ti : B4C摩尔配比分别为3:1、3.5:1、4:1的三种TiB2-TiC复相多孔陶瓷,对其燃烧合成特征、相组成、微观形貌、孔隙率、抗氧化性能和孔隙形成机理进行了分析。结果表明: Ti-B4C体系最高燃烧温度达2458 K,XRD图谱显示只有TiB2和TiC两种物相。多孔TiB2-TiC陶瓷具有大孔、骨架小孔的两级孔结构特征,开孔率为30.67 ~ 31.19%。TiB2-TiC陶瓷具有良好的高温抗氧化性能。多孔材料的造孔机理主要包括粉末压坯颗粒间的原始间隙,燃烧合成反应过程中先熔化的Ti颗粒在毛细作用下发生流动形成的原位孔隙,原位孔隙和颗粒间原始间隙结合形成的大孔隙以及燃烧合成过程中因熔化析出作用形成的小孔隙。

    Abstract:

    Porous TiB2-TiC multiphase ceramics were prepared by Self-propagation High-temperature Synthesis (SHS) and the reactant mole ratios of Ti:B4C were 3:1, 3.5:1 and 4:1. The combustion characteristics, phase composition, microstructure,porosity and oxidation resistance of the products were investigated. The results show that the highest combustion temperature is 2458 K and the combustion products are mainly composed of TiB2 and TiC. The open porosity of the porous products are within the range of 30.67%~31.19% and TiB2-TiC multiphase ceramics possess good high temperature oxidation resistance at 923 K in air. The main pore formation mechanism includes the residual pores among the particles of the green powder compacts, and the in-situ pores owing to the molten titanium particles flowing during the combustion synthesis reaction. The large pores are formed by the interstitial hole combining with the in-situ pores, and the small pores are formed during the solution-precipitation process.

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刘亚南,何志敏,冯培忠,孙智.自蔓延高温合成多孔TiB2-TiC复相陶瓷[J].稀有金属材料与工程,2018,47(S1):217~221.[Liu Yanan, He Zhimin, Feng Peizhong, Sun Zhi. Self-propagation High-temperature Synthesis of Porous TiB2-TiC Multiphase Ceramics[J]. Rare Metal Materials and Engineering,2018,47(S1):217~221.]
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  • 收稿日期:2017-06-20
  • 最后修改日期:2018-07-30
  • 录用日期:2018-03-07
  • 在线发布日期: 2018-10-22
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