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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >An evaluation of the effects of SiC layer thinning on failure of TRISO-coated fuel particles
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An evaluation of the effects of SiC layer thinning on failure of TRISO-coated fuel particles

机译:SiC层变薄对TRISO涂层燃料颗粒失效的影响评估

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摘要

The fundamental design for a gas-cooled reactor relies on the behavior of the coated particle fuel. The coating layers surrounding the fuel kernels in these spherical particles, consisting of pyrolytic carbon and silicon carbide layers, act as a pressure vessel that retains fission products. Many more fuel particles have failed in US irradiations than would be expected when only one-dimensional pressure vessel failures are considered. Several multi-dimensional failure mechanisms that may have contributed to these failures have been previously studied, such as (1) irradiation-induced shrinkage cracks in the inner pyrocarbon (IPyC) layer, (2) partial debonding between the IPyC and SiC layers, and (3) deviations from a perfectly spherical shape. A further phenomenon that could lead to particle failures is thinning of the SiC layer caused by either thermal decomposition or interaction with fission products. Results of a study of the effects of SiC thinning and criteria for evaluating this behavior in a fuel performance code are presented. (c) 2006 Elsevier B.V. All rights reserved.
机译:气冷反应堆的基本设计取决于涂层颗粒燃料的性能。由热解碳层和碳化硅层组成的这些球形颗粒中围绕燃料内核的涂层充当保持裂变产物的压力容器。与仅考虑一维压力容器故障的情况相比,在美国辐射中发生故障的燃料颗粒要多得多。先前已经研究了可能导致这些故障的多种多维故障机制,例如(1)辐照引起的内部热碳(IPyC)层中的收缩裂纹,(2)IPyC和SiC层之间的部分脱胶,以及(3)与完美球形的偏差。可能导致颗粒失效的另一现象是由于热分解或与裂变产物相互作用而导致的SiC层变薄。给出了SiC减薄效果的研究结果以及在燃油性能规范中评估此行为的标准。 (c)2006 Elsevier B.V.保留所有权利。

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