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On the Stability of c-BN-Reinforcing Particles in Ceramic Matrix Materials

机译:陶瓷基材料中c-BN增强颗粒的稳定性

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摘要

Cubic boron nitride (c-BN) composites produced at high pressures and temperatures are widely used as cutting tool materials. The advent of new, effective pressure-assisted densification methods, such as spark plasma sintering (SPS), has stimulated attempts to produce these composites at low pressures. Under low-pressure conditions, however, transformation of c-BN to the soft hexagonal BN (h-BN) phase can occur, with a strong deterioration in hardness and wear. In the present work, the influence of secondary phases (B2O3, Si3N4, and oxide glasses) on the transformation of c-BN was studied in the temperature range between 1100 °C and 1575 °C. The different heat treated c-BN particles and c-BN composites were analyzed by SEM, X-ray diffraction, and Raman spectroscopy. The transformation mechanism was found to be kinetically controlled solution–diffusion–precipitation. Given a sufficiently low liquid phase viscosity, the transformation could be observed at temperatures as low as 1200 °C for the c-BN–glass composites. In contrast, no transformation was found at temperatures up to 1575 °C when no liquid oxide phase is present in the composite. The results were compared with previous studies concerning the c-BN stability and the c-BN phase diagram.
机译:在高压和高温下生产的立方氮化硼(c-BN)复合材料被广泛用作切削工具材料。新的,有效的压力辅助致密化方法的出现,例如火花等离子体烧结(SPS),刺激了人们在低压下生产这些复合材料的尝试。但是,在低压条件下,会发生c-BN向软六方BN(h-BN)相的转变,硬度和耐磨性大大降低。在目前的工作中,研究了在1100°C和1575°C之间的温度范围内,第二相(B2O3,Si3N4和氧化物玻璃)对c-BN转变的影响。通过SEM,X射线衍射和拉曼光谱分析了不同的热处理的c-BN颗粒和c-BN复合材料。发现该转化机理是动力学控制的溶液-扩散-沉淀。如果液相粘度足够低,则在c-BN-玻璃复合材料的温度低至1200°C时就可以观察到这种转变。相反,当复合材料中不存在液态氧化物相时,在高达1575°C的温度下未发现任何相变。将结果与先前关于c-BN稳定性和c-BN相图的研究进行了比较。

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