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首页> 外文期刊>Journal of the European Ceramic Society >Ti3SiC2 interphase coating in SiCf/SiC composites: Effect of the coating fabrication atmosphere and temperature
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Ti3SiC2 interphase coating in SiCf/SiC composites: Effect of the coating fabrication atmosphere and temperature

机译:SICF / SIC复合材料中的TI3SIC2相互作用涂层:涂层制造气氛和温度的影响

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The SiC fibers were coated with Ti3SiC2 interphase by dip-coating. The Ti3SiC2 coated fibers were heat-treated from 900 degrees C to 1100 degrees C in vacuum and argon atmospheres to comparatively analyze the effect of temperature and atmosphere on the microstructural evolution and mechanical strength of the fibers. The results show that the surface morphology of Ti3SiC2 coating is rough in vacuum and Ti3SiC2 is decomposed at 1100 degrees C. However, in argon atmosphere, the surface morphology is smooth and Ti3SiC2 is oxidized at 1000 degrees C and 1100 degrees C. At 1100 degrees C, Ti3SiC2 oxidized to form a thin layer of amorphous SiO2 embedded with TiO2 grains. Meanwhile, defects and pores appeared in the interphase scale. As a result, the fiber strength treated in the argon was lower than that treated in vacuum. The porous Ti3SiC2 interphase fabricated under vacuum was then employed to prepare the SiCf/SiC mini composite by chemical vapor infiltration (CVI) combined with precursor infiltration pyrolysis (PIP), and can effectively improve the toughness of SiCf/SiC mini composite. The propagating cracks can be deflected within the porous interphase layer, which promotes fiber pull-outs under the tensile strength.
机译:采用浸渍法在SiC纤维表面涂覆Ti3SiC2界面相。Ti3SiC2涂层纤维在真空和氩气气氛下从900℃到1100℃进行热处理,以对比分析温度和气氛对纤维微观结构演变和机械强度的影响。结果表明,Ti3SiC2涂层的表面形貌在真空中是粗糙的,Ti3SiC2在1100℃下分解。然而,在氩气气氛中,表面形貌是光滑的,Ti3SiC2在1000℃和1100℃下被氧化。在1100℃下,Ti3SiC2氧化形成一层嵌入TiO2颗粒的非晶SiO2薄层。同时,界面尺度上出现了缺陷和气孔。结果表明,氩气处理的纤维强度低于真空处理的纤维强度。然后利用真空制备的多孔Ti3SiC2界面相,通过化学气相渗透(CVI)结合前驱体渗透热解(PIP)制备SiCf/SiC复合材料,可以有效提高SiCf/SiC复合材料的韧性。扩展的裂纹可以在多孔界面层内偏转,从而在拉伸强度下促进纤维拔出。

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