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BEHAVIORS OF SiC FIBERS AT HIGH TEMPERATURE

机译:高温下SiC纤维的行为

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On the one hand, considering the improvements of mechanical and thermal behaviours of the last generation of SiC fibers (Hi-Nicalon S, Tyranno SA3); on the other hand, regarding physical and chemical properties and stability under irradiation, SIC/SiC composites are potential candidates for nuclear applications in advanced fission and fusion reactors. CEA must characterize and optimize these composites before their uses in reactors. In order to study this material, CEA is developing a multi-scale approach by modelling from fibers to bulk composite specimen: fibres behaviours must be well known in first. Thus, CEA developed a specific tensile, test device on single fibers at high temperature, named MecaSiC. Using this device, we have already characterized the thermoelastic and thermoelectric behaviours of SiC fibers. Additional results about the plastic properties at high temperatures were also obtained. Indeed, we performed tensile tests between 1200℃ up to 1700℃ to characterize this plastic behaviour. Some thermal annealing, up to 3 hours at 1700℃, had been also performed. Furthermore, we compare the mechanical behaviours with; the thermal evolution of the electric resistivity of these SiC fibers. Soon, MecaSiC will be coupled to a new charged particle accelerator. Thus, in this configuration, we will be able to study in-situ irradiation effects on fibre behaviours, as swelling or creep for example.
机译:一方面,考虑到上一代SiC纤维(Hi-Nicalon S,Tyranno SA3)的机械性能和热性能的改善;另一方面,就辐射下的理化性质和稳定性而言,SIC / SiC复合材料是先进裂变和聚变反应堆中核应用的潜在候选者。 CEA必须在将这些复合材料用于反应堆之前对其进行表征和优化。为了研究这种材料,CEA正在通过从纤维到块状复合材料样本的建模开发一种多尺度方法:首先必须了解纤维的行为。因此,CEA在高温下针对单根纤维开发了一种特殊的拉伸测试设备,名为MecaSiC。使用该设备,我们已经表征了SiC纤维的热弹性和热电性能。还获得了有关高温下塑性性能的其他结果。实际上,我们在1200℃至1700℃的温度范围内进行了拉伸试验,以表征这种塑性行为。还进行了一些热退火,在1700℃下长达3小时。此外,我们将机械性能与这些SiC纤维的电阻率的热演化。很快,MecaSiC将与新的带电粒子加速器耦合。因此,在这种配置下,我们将能够研究原位辐射对纤维行为的影响,例如膨胀或蠕变。

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