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首页> 外文期刊>Journal of Materials Science >STRENGTH AND FRACTURE TOUGHNESS OF IN SITU-TOUGHENED SILICON CARBIDE
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STRENGTH AND FRACTURE TOUGHNESS OF IN SITU-TOUGHENED SILICON CARBIDE

机译:原位碳化硅硬质合金的强度和断裂韧性

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摘要

Fine beta-SiC powders either pure or with the addition of 1 wt % of alpha-SiC particles acting as a seeding medium, were hot-pressed at 1800 degrees C for 1 h using Y2O3 and Al2O3 as sintering aids and were subsequently annealed at 1900 degrees C for 2, 4 and 8 h. During the subsequent heat treatment, the beta --> alpha phase transformation of SIC produced a microstructure of ''in situ composites'' as a result of the growth of elongated large alpha-SiC grains. The introduction of alpha-SiC seeds into the beta-SiC accelerated the grain growth of elongated large grains during annealing which led to a coarser microstructure. The sample strength values decreased as the grain size and fracture toughness continued to increase beyond the level where clusters of grains act as fracture origins. The average strength of the in situ-toughened SiC materials was in the range of 468-667 MPa at room temperature and 476-592 MPa at 900 degrees C. Typical fracture toughness values of 8 h annealed materials were 6.0 MPa m(1/2) for materials containing alpha-SiC seeds and 5.8 MPa m(1/2) for pure beta-SiC samples. [References: 19]
机译:将纯的或添加1 wt%的α-SiC颗粒作为晶种的精细β-SiC粉末在1800℃下使用Y2O3和Al2O3作为烧结助剂热压1小时,然后在1900℃退火。摄氏度2、4和8小时。在随后的热处理过程中,由于拉长的大α-SiC晶粒的生长,SIC的β->α相转变产生了“原位复合材料”的微观结构。将α-SiC晶种引入β-SiC可以加速退火过程中细长大晶粒的晶粒生长,从而导致较粗的微观结构。样品强度值随着晶粒尺寸和断裂韧性继续增加而超过晶粒簇作为断裂起点的水平而降低。原位增韧的SiC材料的平均强度在室温下为468-667 MPa,在900摄氏度下为476-592 MPa.8 h退火材料的典型断裂韧性值为6.0 MPa m(1/2 )包含α-SiC晶种的材料,以及纯β-SiC样品的5.8 MPa m(1/2) [参考:19]

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