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Further studies on the use of Raman spectroscopy and X-ray diffraction for the characterisation of TiC-containing carbon–carbon composites

机译:关于使用拉曼光谱和X射线衍射表征含TiC的碳-碳复合材料的进一步研究

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摘要

[EN] Raman spectroscopy and X-ray diffraction are used to study the crystalline structure of carbon–carbon and TiC-containing composites. The advantages and drawbacks of these techniques for the characterisation of carbon–carbon composites are analysed in the light of the distribution and arrangement of their components and the microstructural orientation of the supporting matrix. Analyses performed on longitudinal and transverse sections of the composites confirm that the measurements are affected by the orientation of the crystals. The overall crystalline parameters calculated by X-ray diffraction were unequivocally resolved for each single component by means of Raman spectroscopy. A significantly higher degree of order was observed in the TiC-containing matrix as a result of the catalytic graphitisation of the carbon achieved by the addition of titanium. In addition, Raman spectroscopy corroborated that the incorporation of TiC into the carbon matrix does not disrupt the orientation of the graphene planes of the matrix parallel to the fibre axis, a necessary characteristic for achieving an optimum heat transfer through the material.
机译:[EN]拉曼光谱和X射线衍射用于研究含碳-碳和TiC的复合材料的晶体结构。根据其成分的分布和排列以及支撑基质的微观结构取向,分析了表征碳-碳复合材料的这些技术的优缺点。在复合材料的纵向和横向截面上进行的分析证实,测量值受晶体取向的影响。通过拉曼光谱法明确地确定了每个组分的X射线衍射计算的总体晶体参数。由于通过添加钛实现的碳的催化石墨化作用,在含TiC的基体中观察到明显更高的有序度。此外,拉曼光谱证实了将TiC掺入碳基质中不会破坏基质的石墨烯平面平行于纤维轴的方向,这是实现通过材料的最佳热传递的必要特性。

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