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Synthesis and Microstructural Evaluation of SiC-AlN Composites

机译:SiC-AlN复合材料的合成与微观结构评价

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摘要

High-density SiC-AlN composites were fabricated from powder mixtures (50:50 in mol) in 1900℃-2100℃ temperature range by SPS process. SiC(0.3μm or 0.03μm) and AlN(1.1μm) were used as starting materials. The density of composite increased with increasing firing temperature. From the identification of crystal phase and the change of lattice constant, mixed phases of 3C(β-SiC)ss and 2H(α-SiC/AlN)ss were found at 1900℃ and 2000℃, and only 2Hss was found at 2100℃. The OM and EPMA observation indicated that SiC-rich regions (size:10-50μm) existed throughout SiC(0.3μm)-AlN composite because of aggregation of SiC powder. In SiC(0.03μm)-AlN composite, on the other hand, SiC-rich regions (size:submicron) and AlN-rich regions (size: approximately 1μm) existed on a microscopic level at 1900℃, whereras, it was confirmed from EPMA and SEM observation that homogeneous 2H(ss) formed with large grain-growth at 2100℃. The microstructure of SiC(0.03μm)-AlN composite at 2000℃ was analyzed to investigate more detailed compositional variation of solid solution. SEM-EDS observation indicated that 3C(ss), SiC-rich 2H(ss) and AlN-rich 2H(ss) existed in SiC(0.03μm)-AlN composite at 2000℃.
机译:采用SPS工艺,在1900℃〜2100℃的温度范围内,由粉末混合物(摩尔比为50:50)制备了高密度SiC-AlN复合材料。以SiC(0.3μm或0.03μm)和AlN(1.1μm)为起始材料。复合材料的密度随着烧成温度的升高而增加。从晶相的识别和晶格常数的变化,在1900℃和2000℃发现3C(β-SiC)ss和2H(α-SiC/ AlN)ss的混合相,在2100℃仅发现2Hss 。 OM和EPMA的观察表明,由于SiC粉末的聚集,整个SiC(0.3μm)-AlN复合材料中都存在SiC富集区域(尺寸:10-50μm)。另一方面,在1900℃下,在SiC(0.03μm)-AlN复合材料中,在微观水平上存在SiC富集区(尺寸:亚微米)和AlN富集区(尺寸:约1μm)。 EPMA和SEM观察到,在2100℃时,形成了均匀的2H(ss),晶粒长大。分析了SiC(0.03μm)-AlN复合材料在2000℃下的显微组织,以研究固溶体的更详细的组成变化。 SEM-EDS观察表明,在2000℃下,SiC(0.03μm)-AlN复合材料中存在3C(ss),SiC富集2H(ss)和AlN富集2H(ss)。

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