材料科学
微观结构
相间
复合材料
化学气相渗透
纹理(宇宙学)
极限抗拉强度
复合数
化学气相沉积
纳米技术
遗传学
图像(数学)
计算机科学
生物
人工智能
作者
E. Buet,James Braun,Cédric Sauder
出处
期刊:Coatings
[Multidisciplinary Digital Publishing Institute]
日期:2022-04-22
卷期号:12 (5): 573-573
被引量:22
标识
DOI:10.3390/coatings12050573
摘要
In the framework of SiC/SiC composite development for nuclear applications, the influence of pyrocarbon interphase texture and thickness on the mechanical behavior both on as-processed materials and on irradiated materials is a major concern. Thus, the PyC interphase influence has to be clearly addressed to define its optimal chemical vapor infiltration processing parameters. For this purpose, specific 2.5D SiC/SiC composites reinforced with Hi-Nicalon S fibers and with two kinds of PyC texture and thickness were produced. Transmission electronic microscopy allowed PyC thickness and microstructure/texture characterizations, whereas push-out and tensile tests were employed as experimental mechanical procedures. The original result is that PyC nature directly influences the interfacial shear stress and failure mode of the weakest interface, regardless of the PyC thickness within the studied range. Adhesive failure or cohesive failure are highlighted depending on the PyC CVI deposition mechanisms. Similar post-irradiation characterizations will be required to assess the role of irradiation on the PyC microstructure/texture evolution and mechanical behavior of these materials.
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