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Stressed oxidation behaviors of 2D C/SiC-BCx composite under wet oxygen atmosphere

机译:湿氧气氛下2 C / SiC-BCx复合材料的应力氧化行为

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摘要

To estimate the capability of SiC-BCx protecting carbon fibers under tensile stress, the creep behavior of 2D C/SiC-BCx Ceramic-matrix composites (CMCs) prepared by chemical vapor infiltration (CVI) has been tested and investigated in static wet oxygen atmosphere at 900 degrees C. Environmental degradation and Micro-mechanics of the composite was discussed according to the Microstructural analysis observed by scanning electron microscopy (SEM) and length change recorded by Instron material testing device. It is found the room temperature residual flexural strength increases with increasing creep stress. The strength improvement is attributed to the glass phase generation and local stress redistribution. The oxidative damage of 2D C/SiC-BCx composite is more and more serious with the increase of the creep stress. The steady creep speed and accelerated creep speed lay on the oxidation speed of carbon fiber. The oxidation of BCx layer and carbon fiber is controlled by gas diffusion. (C) 2016 Elsevier Ltd. All rights reserved.
机译:为了评估SiC-BCx在拉伸应力下保护碳纤维的能力,在静态湿氧气氛下测试并研究了由化学气相渗透(CVI)制备的2D C / SiC-BCx陶瓷基复合材料(CMC)的蠕变行为。在900℃下,通过扫描电子显微镜(SEM)观察到的微观结构分析和Instron材料测试装置记录的长度变化,讨论了复合材料的环境降解和微力学。发现室温残余挠曲强度随着蠕变应力的增加而增加。强度的提高归因于玻璃相的产生和局部应力的重新分布。随着蠕变应力的增加,2D C / SiC-BCx复合材料的氧化损伤越来越严重。稳态蠕变速度和加速蠕变速度取决于碳纤维的氧化速度。 BCx层和碳纤维的氧化是通过气体扩散来控制的。 (C)2016 Elsevier Ltd.保留所有权利。

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