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CHARACTERIZATION OF SIC-SIC COMPOSITES FOR APPLICATION IN CURRENT AND ADVANCED NUCLEAR REACTORS

机译:用于电流和高级核反应堆的SIC-SIC复合材料的表征

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This paper describes the micro-mechanical properties of select silicon carbide - silicon carbide (SiC-SiC) composites as well as the validity and reliability of specific experimental techniques available for characterization. Four non-irradiated SiC-SiC samples fabricated through chemical vapor infiltration were cut, polished, and evaluated in this work. Nano-indentation was performed on all four samples for which the average hardness and reduced modulus were obtained in the fiber, and matrix. Across all samples, the trend was consistent; the matrix exhibited a higher average hardness over the fiber. However, the matrix hardness was significantly lower than values found in previous studies. Preliminary experiments concerning the interfacial shear strength were carried out via a fiber wedge push out test. The data collected found the internal friction coefficient to be 0.175 and the interfacial debond shear strength to be 174 MPa. These results are preliminary and will benefit greatly as a more refined testing procedure and larger sample set are investigated.
机译:本文介绍了选定的碳化硅-碳化硅(SiC-SiC)复合材料的微机械性能,以及可用于表征的特定实验技术的有效性和可靠性。切割,抛光和评估了通过化学气相渗透法制得的四个未经辐照的SiC-SiC样品,并对其进行了评估。对所有四个样品进行了纳米压痕,获得了纤维和基体的平均硬度和降低的模量。在所有样本中,趋势是一致的。基质表现出比纤维更高的平均硬度。但是,基体硬度明显低于先前研究中发现的值。通过纤维楔形推出试验进行了有关界面剪切强度的初步实验。收集的数据发现内部摩擦系数为0.175,界面剥离粘结剪切强度为174 MPa。这些结果是初步的,随着对更精细的测试程序和更大样本集的研究,将大有裨益。

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