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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Longitudinal dilation behavior of ion-irradiated Tyranno?-SA SiC fibers at elevated-temperatures
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Longitudinal dilation behavior of ion-irradiated Tyranno?-SA SiC fibers at elevated-temperatures

机译:高温下离子辐照的Tyranno?-SA SiC纤维的纵向膨胀行为

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Advanced SiC fibers with low oxygen content, nearly-stoichiometric composition and high crystallinity, are envisaged as reinforcement in SiC f/SiC composites for next generation nuclear reactors. In this study, we performed ion-irradiation experiments at GANIL (Caen, France) on the advanced fiber, Tyranno?-SA grade-3, with 95 MeV Xe ions at room-temperature. To prevent the damage gradient in fiber, the fibers were irradiated on two sides with two fluence levels (2.46 × 10 ~(14) ions/cm ~2 for the first side +2.52 × 10 ~(14) ions/cm ~2 for the opposite side and 9.89 × 10 ~(14) ions/cm ~2 for the first side +1.02 × 10 ~(15) ions/cm ~2 for the opposite side). According to TRIM-code calculation, the ion irradiation damages in the fibers affected the entire volume of the fibers, with estimations of 0.05 and 0.2 dpa. The structural evolution under the ion irradiation was studied by transmission electron microscopy (TEM) and Raman spectroscopy. The results did not reveal a complete amorphization. The gradual transition in physical properties, such as deformation and coefficient of thermal expansion (CTE) and electrical conductivity, during heating and cooling up to 1800 °C were monitored by longitudinal dilation test of a single fiber. These physical property changes (or recoveries) of the ion-irradiated fibers were categorized in the following temperature regions (1st stage: <200 °C (no recovering), 2nd stage: 200-1400 °C (recovering) and 3rd stage: >1400 °C (almost completely recovered)). In particular, a linear recovery in the medium range of 800-1400 °C during heating had very limited property changes.
机译:设想将具有低氧含量,近化学计量组成和高结晶度的先进SiC纤维作为下一代核反应堆的SiC f / SiC复合材料的增强材料。在这项研究中,我们在GANIL(法国卡昂)的先进纤维Tyranno?-SA 3级上进行了离子辐照实验,室温下含95 MeV Xe离子。为了防止纤维中的损伤梯度,以两个通量水平(第一面为2.46×10〜(14)离子/ cm〜2 +2.52×10〜(14)离子/ cm〜2的两侧照射纤维。另一侧为9.89×10〜(14)离子/ cm〜2,另一侧为+1.02×10〜(15)离子/ cm〜2)。根据TRIM代码计算,纤维中的离子辐照损伤会影响纤维的整个体积,估计值为0.05 dpa和0.2 dpa。通过透射电子显微镜(TEM)和拉曼光谱研究了离子辐照下的结构演变。结果没有显示出完全的非晶化。通过单根纤维的纵向膨胀测试,可以监测在高达1800°C的加热和冷却过程中物理性能(例如变形,热膨胀系数(CTE)和电导率)的逐渐变化。离子辐照纤维的这些物理性质变化(或回收率)分为以下温度区域(第一阶段:<200°C(无回收),第二阶段:200-1400°C(回收)和第三阶段:> 1400°C(几乎完全恢复))。特别地,加热期间在800-1400℃的中等范围内的线性恢复具有非常有限的性质变化。

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