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首页> 外文期刊>Journal of Materials Research >Properties of nanostructured diamond-silicon carbide composites sintered by high pressure infiltration technique
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Properties of nanostructured diamond-silicon carbide composites sintered by high pressure infiltration technique

机译:高压浸渗技术烧结的纳米结构金刚石-碳化硅复合材料的性能

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摘要

A high-pressure silicon infiltration technique was applied to sinter diamond-SiC composites with different diamond crystal sizes. Composite samples were sintered at pressure 8 GPa and temperature 2170 K. The structure of composites was studied by evaluating x-ray diffraction peak profiles using Fourier coefficients of ab initio theoretical size and strain profiles. The composite samples have pronounced nanocrystalline structure: the volume-weighted mean crystallite size is 41-106 nm for the diamond phase and 17-37 nm for the SiC phase. The decrease of diamond crystal size leads to increased dislocation density in the diamond phase, lowers average crystallite sizes in both phases, decreases composite hardness, and improves fracture toughness.
机译:将高压硅渗透技术应用于烧结具有不同金刚石晶体尺寸的金刚石-SiC复合材料。在8 GPa的压力和2170 K的温度下烧结复合材料样品。通过使用从头开始的理论尺寸和应变曲线的傅里叶系数评估X射线衍射峰的轮廓,研究了复合材料的结构。复合样品具有明显的纳米晶体结构:金刚石相的体积加权平均晶粒尺寸为41-106 nm,SiC相的体积加权平均晶粒尺寸为17-37 nm。金刚石晶体尺寸的减小导致金刚石相中位错密度的增加,两个相中平均晶粒尺寸的降低,复合材料硬度的降低以及断裂韧性的提高。

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