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首页> 外文期刊>Journal of the European Ceramic Society >Joining of various engineering ceramics and composites by a modified preceramic polymer for high-temperature application
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Joining of various engineering ceramics and composites by a modified preceramic polymer for high-temperature application

机译:通过改性的陶瓷前聚合物将各种工程陶瓷和复合材料连接起来,以进行高温应用

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摘要

A modified heat-resistant polymer adhesive, which can be applied under both aerobic and anaerobic environments, was developed to bond various ceramics and composites. After curing process, as-received joints do not need subsequent processing and can keep appropriate strength within the whole heat-treatment processes. With increasing temperature, a series of reactions occurred at bonding area, thus influencing the adhesive's performance and successively dividing the bonding mechanism into four modes: resin physical bonding, glass physical bonding, ceramic physical bonding and chemical bonding. The maximum strength of mullite joints could reach 33 MPa after heating at 1300 degrees C in air, while those of SiC and C/C joints were just 26 MPa and 13 MPa at 1100 degrees C in Ar, respectively. The finite-element and fracture analysis of these joints indicated that the failure of mullite and SiC joints only occurred at bonding layer, while that of C/C joints occurred at both bonding layer and interface. (C) 2015 Elsevier Ltd. All rights reserved.
机译:开发了一种可在有氧和厌氧环境下使用的改性耐热聚合物胶粘剂,以粘合各种陶瓷和复合材料。固化后,不需要再进行后续处理,并且可以在整个热处理过程中保持适当的强度。随着温度的升高,在粘合区域发生一系列反应,从而影响了胶粘剂的性能,并将粘合机理依次分为四种模式:树脂物理粘合,玻璃物理粘合,陶瓷物理粘合和化学粘合。空气中在1300℃加热后,莫来石接头的最大强度可以达到33 MPa,而Ar在1100℃下,SiC和C / C接头的最大强度分别仅为26 MPa和13 MPa。这些接头的有限元和断裂分析表明,莫来石和SiC接头的破坏仅发生在粘结层,而C / C接头的破坏发生在粘结层和界面。 (C)2015 Elsevier Ltd.保留所有权利。

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