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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Elastic moduli reduction in SiC-SiC tubular specimen after high heat flux neutron irradiation measured by resonant ultrasound spectroscopy
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Elastic moduli reduction in SiC-SiC tubular specimen after high heat flux neutron irradiation measured by resonant ultrasound spectroscopy

机译:通过谐振超声波谱测量的高热通量中子辐射后SiC-SiC管状试样的弹性模量减少

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摘要

The initial results of a post-irradiation examination study conducted on a SiC-SiC tubular specimen irradiated under a high radial heat flux are presented herein. The elastic properties of the specimen were evaluated before and after the irradiation using the resonant ultrasound spectroscopy (RUS) technique. The composite tubular specimen was considered as an orthotropic elastic with nine elastic constants (Young's moduli, shear moduli and Poisson's ratios-three components of each) for representing its full elastic deformation behavior. All the elastic moduli decreased after irradiation; the reduction was as high as 35% in one of the moduli. The significant decrease in the moduli indicates the presence of microcracks. The results from a computational study show significant stress development in the specimen due to irradiation, primarily caused by differential swelling across the thickness of the specimen. The evaluated stresses exceed the proportional limit stress of the material, indicating the likelihood of matrix microcracking, and thus corroborating the results obtained from RUS. X-ray Computed Tomography (XCT) study confirmed the presence of cracks in the irradiated specimen. These cracks occurred at the inner region of the specimen and propagated in axial and hoop directions. These XCT results are in agreement with the RUS results and stress distribution results from the computational study. (C) 2019 Elsevier B.V. All rights reserved.
机译:本文介绍了在高径向热通量照射的SiC-SiC管状试样上进行的辐射检查研究的初始结果。使用谐振超声波谱(RUS)技术在照射之前和之后评估样品的弹性性质。复合管状标本被认为是具有九个弹性常数的正交弹性(杨氏调节,剪切模量和泊松的比例 - 三种组分),用于代表其全部弹性变形行为。辐照后所有弹性模量都减少;其中一项模胶中的减少高达35%。 Moduli的显着降低表明存在微裂纹。计算研究的结果表明,由于辐射引起的标本中的显着应力发育,主要由样本厚度差异肿胀引起的。评估的应力超过了材料的比例极限应力,表明基质微裂纹的可能性,从而证实了从Rus获得的结果。 X射线计算机断层扫描(XCT)研究证实了辐照标本中的裂缝存在。这些裂缝发生在样品的内部区域并以轴向和箍方向传播。这些XCT结果与计算研究的RUS结果和压力分布结果一致。 (c)2019 Elsevier B.v.保留所有权利。

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