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EFFECTS OF SIZE AND GEOMETRY ON THE EQUIBIAXIAL FLEXURAL TEST OF FINE GRAINED NUCLEAR GRAPHITE

机译:尺寸与几何效果对细粒核石墨抗衡性弯曲试验的影响

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Reduction of specimen size is an essential requirement for neutron irradiation effect studies of materials since space in nuclear reactors for those studies are often very limited and costly. Reducing the specimen size can dramatically reduce the cost of these studies, the irradiation exposure to personnel involved in post irradiation examination and the volume of radioactive waste.In this study, 4 specimen sizes were systematically varied to examine the size effect on the equibiaxial flexure test of fine grain nuclear graphite in non-irradiated conditions at room temperature. A statistically significant sample population of 30 was used for each specimen geometry or dimension.The results showed that the round shaped samples followed weibull distribution with Weibull modulus of 25 to 35. The average strength followed the trend of the weakest link theory. The 2 sizes of square shaped samples had Weibull modulus of 29 and 40. Data from round and square samples agree with others reasonably and collectively follow the Weibull scaling theory. It is concluded that the equibiaxial ftexural test using adequate population of small specimens provides useful and reliable information on the statistical strength properties for fine-grained nuclear graphite materials.
机译:试样尺寸的减少是由于这些研究的核反应堆的太空通常非常有限和昂贵的核反应堆空间,因此对材料的中子辐射效应研究的基本要求。减少样品大小可以显着降低这些研究的成本,对参与辐照检查后的人员的照射暴露以及放射性废物的体积。在本研究中,系统地变化了4个样品尺寸,以检查对零配弯曲试验的尺寸效应室温下非照射条件下的细粒核石墨。对于每个试样几何或尺寸,使用统计学上显着的30种样品群。结果表明,圆形样品随后与威布尔模量为25至35的右侧。平均力量遵循最弱的联系理论的趋势。 2尺寸的方形样品具有29和40的Weibull模量。来自圆形和方形样本的数据合理地与他人合理地同意,并且共同遵循Weibull缩放理论。结论是,使用足够群体群体的抗衡性Ftexural试验提供有关细粒核石墨材料统计强度特性的有用和可靠的信息。

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