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首页> 外文期刊>Journal of the European Ceramic Society >Formation of carbon-rich layer on the surface of SiC fiber by sintering under vacuum for superior mechanical and thermal properties
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Formation of carbon-rich layer on the surface of SiC fiber by sintering under vacuum for superior mechanical and thermal properties

机译:真空烧结在真空下烧结碳纤维表面上的富含碳的层,用于优异的机械和热性能

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SiC fibers have been intensively developed for application in advanced aerojet engines, stationary gas turbines and nuclear reactors of the future. In this work, SiC fibers with controllable carbon-rich layer were prepared by sintering under vacuum, which could be attributed to the release of gaseous silicon under vacuum at high temperature. The thickness of the carbon-rich layer on the fiber surface could be adjusted by changing the sintering temperature. Moreover, the carbon-rich layer was well distributed on the fiber surface, combining closely with the interior of the fiber. The as-prepared SiC fibers had high tensile strength and relatively low elastic modulus, which was favorable for weaving into different fabrics. Furthermore, the fibers also exhibited excellent ultra-high temperature resistance due to the presence of carbon-rich layer on the surface, which was better than that of the Hi-Nicalon and Hi-Nicalon S fibers. (C) 2016 Elsevier Ltd. All rights reserved.
机译:SIC纤维在先进的航空喷射发动机,固定式燃气轮机和未来的核反应堆中进行了集中开发。 在这项工作中,通过在真空下烧结制备具有可控碳富碳层的SiC纤维,其可归因于在高温下真空下气态硅的释放。 通过改变烧结温度,可以通过改变烧结温度来调节纤维表面上的富含碳的层的厚度。 此外,富含碳的层在纤维表面上分布得很好,与纤维内部紧密结合。 制备的SIC纤维具有高抗拉强度和相对低的弹性模量,这有利于编织成不同的织物。 此外,由于表面上的富含碳层的存在,纤维也表现出优异的超高耐温性,这比Hi-Nicalon和Hi-Nicalon S纤维更好。 (c)2016 Elsevier Ltd.保留所有权利。

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