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Design of reinforced interfacial structure in brazed joints of C/C composites and Nb by pre-oxidation surface treatment combined with in situ growth of CNTs

机译:通过预氧化表面处理与CNTs原位生长结合的C / C复合材料和Nb钎焊接头中增强界面结构的设计

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摘要

surface modification method of C/C composites involving a combination of pre-oxidation treatment and in situ growth of CNTs was developed to form a reinforced interfacial structure in Nb-C/C brazed joints. The interfacial structure under different surface conditions of the C/C composites and its effects on the mechanical properties of brazed joints at both room temperature (RT) and elevated temperatures were studied. Through pre-oxidation, annular gaps with an adjustable size were uniformly formed around the carbon fibers, and these gaps acted as artificial channels for the liquid brazing alloy to infiltrate into. The RT shear strength of the Nb-C/C joints increased from 29MPa to 57MPa after oxidation of the C/C composites at 800 degrees C for 5min. The growth of CNTs was able to improve the wettability, since it was beneficial for liquid brazing alloy filling in the annular gaps. Further, a reinforced joint with fine TiC particles was formed by the reaction between Ti and the CNTs. The shear strength of the brazed joints reached 62MPa after pre-oxidation and CNT growth and remained at 48 MPa at 500 degrees C. The improvement in the joint shear strength after surface modification of the C/C composites was attributed to the reduced residual stress, increased bonding area, and enhanced pinning effect. (C) 2018 Elsevier Ltd. All rights reserved.
机译:开发了涉及预氧化处理的组合和原位生长CNT的C / C复合材料的表面改性方法,以在Nb-C / C钎焊接头中形成增强界面结构。研究了C / C复合材料的不同表面条件下的界面结构及其对室温(RT)和升高温度的钎焊接头的机械性能。通过预氧化,围绕碳纤维均匀地形成具有可调节尺寸的环形间隙,并且这些间隙充当用于液体钎焊合金的人工通道。 Nb-C / C关节的RT剪切强度在800℃下氧化C / C复合材料后从29MPa到57MPa增加到5分钟。 CNT的生长能够提高润湿性,因为它有利于填充环形间隙的液体钎焊合金。此外,通过Ti和CNT之间的反应形成具有细TIC颗粒的增强接头。预氧化和CNT生长后钎焊接头的剪切强度达到62MPa,并在500℃下保持48MPa。C / C复合材料的表面改性后的关节剪切强度的改善归因于降低的残余应力,增加粘接面积,增强循环效果。 (c)2018年elestvier有限公司保留所有权利。

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