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Thermal conductivity of Mo-reinforced ZrO_2 composites fabricated by spark plasma sintering for inert matrix fuels

机译:火花等离子体烧结制备惰性基质燃料的Mo增强ZrO_2复合材料的热导率

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摘要

ZrO2 is one of the candidate materials for the matrix of inert matrix fuels because of its excellent chemical stability and irradiation resistance. In this paper, the low thermal conductivity of ZrO2 was increased by the addition of Mo reinforcements in order to improve its performance and therefore increase the safety of nuclear reactors. The effect of interfacial thermal resistance and reinforcement structure in terms of its size, shape, and orientation on the thermal conductivity of Mo powder-and Mo wire mesh-reinforced ZrO2 composites fabricated by spark plasma sintering at 1700 degrees C in vacuum was investigated. It was found that structures with a higher degree of interconnectivity of the high thermal conductivity reinforcements were more effective in increasing the thermal conductivity of ZrO2 composites. The Mo wire mesh-ZrO2 composites had a higher thermal conductivity than did the Mo powder-ZrO2 composites, owing to the interconnected structure of the former. The thermal conductivities of the Mo-ZrO2 composites were also analyzed by the finite element analysis and using analytical models of the composites with the dispersed reinforcing particles and the interconnected reinforcement structures. A good agreement was found between the theoretically predicted and experimentally measured thermal conductivity of Mo-reinforced ZrO2 composites. (C) 2017 Elsevier Ltd. All rights reserved.
机译:ZrO2是惰性基质燃料基质的候选材料之一,因为它具有出色的化学稳定性和耐辐照性。在本文中,通过添加Mo增强剂来提高ZrO2的低导热率,以改善其性能并因此增加核反应堆的安全性。研究了界面热阻和增强结构的尺寸,形状和取向对通过真空等离子烧结在1700摄氏度下制备的Mo粉和Mo丝网增强的ZrO2复合材料的热导率的影响。已经发现,具有高导热率增强物的较高互连度的结构在增加ZrO2复合材料的导热率方面更有效。钼丝网-ZrO2复合材料的导热性比钼粉-ZrO2复合材料高,这是由于前者的互连结构。还通过有限元分析和使用具有分散的增强颗粒和互连的增强结构的复合材料的分析模型来分析Mo-ZrO2复合材料的热导率。在Mo增强ZrO2复合材料的理论预测值和实验测量值之间发现了很好的一致性。 (C)2017 Elsevier Ltd.保留所有权利。

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