首页> 外文期刊>Journal of Materials Science >HIGH-TEMPERATURE DEFORMATION OF CORDIERITE GLASS-CERAMIC/SIC PLATELET COMPOSITES
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HIGH-TEMPERATURE DEFORMATION OF CORDIERITE GLASS-CERAMIC/SIC PLATELET COMPOSITES

机译:堇青石玻璃-陶瓷/ SiC平板复合材料的高温变形

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摘要

Composites based on barium-containing cordierite glass-ceramic matrices reinforced with 20 and 30 vol% SiC platelets were fabricated by hot-pressing. The ceramed specimens were tested in compression at 1000, 1200 and 1300 degrees C in air, parallel and perpendicular to the hot-pressing direction. Compressive fracture stresses up to 460 MPa were recorded at 1000 degrees C. Lower stresses were observed at 1200 and 1300 degrees C. The compressive stress decreased with increase in the SIC platelet content and with the compressive direction being parallel to the hot-pressing axis. The mechanical behaviour at high temperatures was related to the presence of a residual glassy phase within the cordierite matrix, as well as to the mode of the crack nucleation within the composites. [References: 22]
机译:通过热压制备基于钡的堇青石玻璃-陶瓷基复合材料,该复合材料用20%和30%(体积)的SiC片增强。在1000、1200和1300摄氏度的空气中,平行和垂直于热压方向,分别对压缩后的陶瓷试样进行压缩测试。在1000摄氏度时记录到460 MPa的压缩断裂应力。在1200和1300摄氏度时观察到较低的应力。压缩应力随着SIC血小板含量的增加和压缩方向平行于热压轴而降低。高温下的机械行为与堇青石基体中残余玻璃态相的存在以及复合材料中裂纹成核的方式有关。 [参考:22]

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