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首页> 外文期刊>Journal of the European Ceramic Society >Interfacial reaction and brazing behaviour of SiCf/SiC with C-f/C composites using Si-10Zr alloy at high temperatures
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Interfacial reaction and brazing behaviour of SiCf/SiC with C-f/C composites using Si-10Zr alloy at high temperatures

机译:用Si-10ZR合金在高温下使用Si-10zr合金的SiCF / SiC的界面反应和钎焊行为

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摘要

A Si-Zr eutectic alloy was employed as a high-temperature braze filler to join SiCf/SiC composites with C-f/C composites. The interfacial microstructure and bonding mechanism on the side of the SiCf/SiC composites were studied for the first time. The results showed that SiC reaction layers formed between the Si-Zr filler and both substrates. The SiC layer resulted from the chemical reaction between Si and C at the filler-C-f/C interface. In contrast, at the filler-SiCf/SiC interface, coarse-SiC crystals only precipitated on the SiC fibre bundles, and there was only non-reactive bonding between the filler and the SiC matrix. In addition, the reactive infiltration process between the liquid Si alloy and the porous substrates contributed to the formation of infiltration structures, including C-f/C-SiC and SiCf/SiC-Si-ZrSi2, resulting in the reinforcement of the substrates and the joint. Finally, a favourable shear strength of 38 MPa was achieved.
机译:采用Si-Zr共晶合金作为高温钎料,将SiCf/SiC复合材料与C-f/C复合材料连接起来。首次研究了SiCf/SiC复合材料侧面的界面微观结构和键合机理。结果表明,Si-Zr填料与两种基体之间形成了SiC反应层。SiC层是Si和C在填料-C-f/C界面上发生化学反应的结果。相比之下,在填料SiCf/SiC界面,粗SiC晶体仅在SiC纤维束上沉淀,填料与SiC基体之间仅存在非反应性结合。此外,液态硅合金和多孔基体之间的反应渗透过程有助于形成渗透结构,包括C-f/C-SiC和SiCf/SiC-Si-ZrSi2,从而增强基体和接头。最后,获得了38 MPa的良好剪切强度。

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