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首页> 外文期刊>Journal of the European Ceramic Society >Joining of CVD-SiC coated and uncoated fibre reinforced ceramic matrix composites with pre-sintered Ti3SiC2 MAX phase using Spark Plasma Sintering
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Joining of CVD-SiC coated and uncoated fibre reinforced ceramic matrix composites with pre-sintered Ti3SiC2 MAX phase using Spark Plasma Sintering

机译:CVD-SiC涂层和未涂覆纤维增强陶瓷基质复合材料采用火花等离子体烧结与预烧结的Ti3SIC2最大相结合

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摘要

CVD-SiC coated and uncoated ceramic matrix composites (C-f/SiC and SiCf/SiC) were joined to their counterparts with a pre-sintered Ti3SiC2 foil using Spark Plasma Sintering. For the first time pre-sintered Ti3SiC2 foil was used as a joining filler. The joining parameters were carefully selected to avoid the decomposition of Ti3SiC2 and the reaction between the joining filler and the CVD-SiC coating, which would have deteriorated the oxidation protective function of the coating. Conformal behaviour of the Ti3SiC2 foil during the diffusion joining and the infiltration of the joining filler into the surface cracks in the CVD beta-SiC coating allowed the filler to be more integrated with the matrix material. While diffusion bonding occurred during joining of the coated composites, a combination of both solid-state reaction and diffusion bonding was observed for the uncoated C-f/SiC composites. This produced the lower shear strength (19.1 MPa) when compared to the diffusion bonded CVD-SiC coated C-f/SiC (31.1 MPa). Crown Copyright (C) 2016 Published by Elsevier Ltd. All rights reserved.
机译:CVD-SiC涂覆和未涂覆的陶瓷基质复合材料(C-F / SiC和SiCF / SiC)与使用火花等离子体烧结的预烧结的Ti3SIC2箔连接到它们的对应物。对于第一次烧结的Ti3 SiC2箔作为连接填料。仔细选择连接参数以避免Ti3 SiC 2的分解和接合填料和CVD-SiC涂层之间的反应,这将劣化涂层的氧化保护功能。 Ti3SIC2箔在扩散连接期间的共形性能和连接填料进入CVDβ-SiC涂料中的表面裂缝中的渗透,使得填料更加集成与基质材料。在连接涂覆的复合材料期间发生扩散键合时,对于未涂覆的C-F / SiC复合材料,观察到固态反应和扩散键的组合。与扩散键合CVD-SiC涂覆的C-F / SiC(31.1MPa)相比,这产生了较低的剪切强度(19.1MPa)。 Crown版权所有(c)2016由elestvier有限公司出版。保留所有权利。

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