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Oxidation Behavior of SiC/TiAl Composite Material

机译:SiC / TiAl复合材料的氧化行为

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摘要

SiC fiber reinforced intermetallic is one of the promising candidate material for the next generation space plane, because of its excellent high temperature specific strength and elastic modulus. Oxidation behavior of the fiber-reinforced intermetallic (FRIM) is one of the most important properties for the practical use in the severe environment. Recently fabrication process of CVD-SiC fiber reinforced y-TiAl matrix composite has been developed. Oxidation behavior of SiC/γ-TiAl and γ-TiAl was studied. Cyclic oxidation experiments were executed at 900℃ under the dry airflow for 200 hours. Mass gains of the specimens were measured. The cross sections of specimen were observed by optical microscope. Mass gain of the SiC/γ-TiAl composite material was two times larger than that of γ-TiAl. Surface of the SiC/γ-TiAl composite was covered with a comparatively thick oxide scale. Furthermore, formation of the oxide at the vicinity of interface between SiC fiber and γ-TiAl matrix was observed. Oxidation mechanism of SiC/γ-TiAl composite was discussed.
机译:SiC纤维增强金属间化合物由于其优异的高温比强度和弹性模量而成为下一代航天飞机的有希望的候选材料之一。纤维增强金属间化合物(FRIM)的氧化行为是在恶劣环境中实际使用的最重要特性之一。最近已经开发了CVD-SiC纤维增强的y-TiAl基复合材料的制造工艺。研究了SiC /γ-TiAl和γ-TiAl的氧化行为。在干燥气流下于900℃进行200小时的循环氧化实验。测量样品的质量增益。用光学显微镜观察样品的横截面。 SiC /γ-TiAl复合材料的质量增益是γ-TiAl的质量增益的两倍。 SiC /γ-TiAl复合材料的表面覆盖有比较厚的氧化皮。此外,观察到在SiC纤维和γ-TiAl基体之间的界面附近形成了氧化物。探讨了SiC /γ-TiAl复合材料的氧化机理。

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