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通过自蔓延高温合成法制备的用于超高温设备的基于二硼化钛的复合材料,结合了强放热反应和弱放热反应 。

TiB₂-Based Composites for Ultra-High-Temperature Devices, Fabricated by SHS, Combining Strong and Weak Exothermic Reactions.

作者信息

Ziemnicka-Sylwester Marta

机构信息

Division of Materials Science and Engineering, Hokkaido University, Sapporo 060-8628, Japan.

出版信息

Materials (Basel). 2013 May 10;6(5):1903-1919. doi: 10.3390/ma6051903.

Abstract

TiB₂-based ceramic matrix composites (CMCs) were fabricated using elemental powders of Ti, B and C. The self-propagating high temperature synthesis (SHS) was carried out for the highly exothermic "" reaction of TiB₂ formation and the "tailing" synthesis of boron carbide characterized by weak exothermicity. Two series of samples were fabricated, one of them being prepared with additional milling of raw materials. The effects of TiB₂ vol fraction as well as grain size of reactant were investigated. The results revealed that combustion was not successful for a TiB₂:B₄C molar ratio of 0.96, which corresponds to 40 vol% of TiB₂ in the composite, however the SHS reaction was initiated and self-propagated for the intended TiB₂:B₄C molar ratio of 2.16 or above. Finally BC₂ was formed as the matrix phase in each composite. Significant importance of the grain size of the C precursor with regard to the reaction completeness, which affected the microstructure homogeneity and hardness of investigated composites, was proved in this study. The grain size of Ti powder did not influence the microstructure of TiB₂ grains. The best properties (HV = 25.5 GPa, average grain size of 9 μm and homogenous microstructure), were obtained for material containing 80 vol% of TiB₂, fabricated using a graphite precursor of 2 μm.

摘要

基于TiB₂的陶瓷基复合材料(CMC)是使用Ti、B和C的元素粉末制备的。利用TiB₂形成的高放热反应以及以弱放热为特征的碳化硼“拖尾”合成进行自蔓延高温合成(SHS)。制备了两个系列的样品,其中一个是对原材料进行额外球磨制备的。研究了TiB₂体积分数以及反应物粒度的影响。结果表明,对于TiB₂:B₄C摩尔比为0.96(对应于复合材料中40 vol%的TiB₂),燃烧未成功,但对于预期的TiB₂:B₄C摩尔比为2.16及以上,SHS反应被引发并自蔓延。最终,BC₂在每种复合材料中形成为基体相。本研究证明了C前驱体的粒度对于反应完全性具有重要意义,这影响了所研究复合材料的微观结构均匀性和硬度。Ti粉的粒度不影响TiB₂晶粒的微观结构。对于使用2μm石墨前驱体制备的含80 vol% TiB₂的材料,获得了最佳性能(HV = 25.5 GPa,平均晶粒尺寸为9μm且微观结构均匀)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d43b/5452511/42e52d69c7fc/materials-06-01903-g001.jpg

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