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Thermal shock fracture of hot silicon carbide immersed in water

机译:浸入水中的热碳化硅的热冲击断裂

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摘要

High purity CVD-SiC, considered as a nuclear grade cladding material, exhibits thermal shock tolerance similar to 1260 degrees C in room temperature water and beyond it (>1260 degrees C) in saturated water. Being thinner than the tested specimen thickness (1.5 mm x 2.0 mm), the actual cladding (0.57 mm) is anticipated to exhibit enhanced thermal shock tolerance. This implies that thermal shock alone may not shatter the SiC cladding in reflood. Level of fuel rod internal pressure will be a decisive factor in predicting cladding fracture during reflood. Decreasing water subcooling significantly reduces thermal shock fracture danger of ceramic materials. Thermal shock experiments showed strength retention for both pressureless sintered-SiC and CVD SiC, as well as Al2O3 samples quenched from temperatures up to 1260 degrees C in saturated water. Solid-liquid contacts during nucleate and transition boiling, and boiling incipience upon water bath entering are a highly probable origin of thermal shock fracture in water quenching. (C) 2015 Elsevier B.V. All rights reserved.
机译:被认为是核级熔覆材料的高纯度CVD-SiC在室温水中表现出的热冲击耐受性类似于1260摄氏度,而在饱和水中则表现出超过1260摄氏度的热冲击耐受性。由于厚度小于测试样品的厚度(1.5毫米x 2.0毫米),实际的覆层(0.57毫米)有望表现出更高的耐热冲击性。这意味着仅热冲击就不会破坏回注中的SiC覆层。燃料棒内部压力的水平将是预测回油过程中包层破裂的决定性因素。降低水过冷度可显着降低陶瓷材料的热冲击破裂危险。热冲击实验显示了无压烧结SiC和CVD SiC以及在饱和水中从温度高达1260℃淬火的Al2O3样品的强度保持率。在成核和过渡沸腾过程中的固液接触以及水浴进入时的沸腾开始是水淬中热冲击破裂的极可能原因。 (C)2015 Elsevier B.V.保留所有权利。

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