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Microstructural evolution of Mo-UO2 cermets under high temperature hydrogen environments

机译:高温氢气环境下MO-UO2金属膜的微观结构演化

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摘要

Ceramic-metallic (cermet) materials show promise for use in nuclear thermal propulsion applications due to attractive thermophysical properties including high temperature stability and high thermal conductivity. In this work, molybdenum-uranium dioxide (Mo-UO2) cermet fuel elements were fabricated by means of spark plasma sintering (SPS) and were subsequently exposed to hydrogen at high temperatures (2500 K). Mo-UO2 samples pre- and post-exposure were characterized by means of optical microscopy, scanning electron microscopy, and X-ray diffraction (XRD). Microscopy analyses of the as-produced material displayed microscopic cracking on the interior of the spherical UO2 fuel particles but confirmed that the fuel particles were fully encapsulated in the Mo matrix. The results further showed mass loss, macroscopic swelling, and cracking in the cermet samples which occurred during high temperature hydrogen testing. Nanoscale swelling was evidenced by XRD in the Mo matrix and UO2 fuel structure due to the incorporation of defects and accompanied microstrain. (c) 2020 Elsevier B.V. All rights reserved.
机译:由于具有高温稳定性和高导热性,陶瓷金属(金属陶瓷)材料显示出用于核热发出应用的承诺。在这项工作中,通过火花血浆烧结(SPS)制造钼 - 二氧化铀(Mo-UO2)金属陶瓷燃料元件,随后在高温(2500k)下暴露于氢气。通过光学显微镜,扫描电子显微镜和X射线衍射(XRD)表征Mo-UO2样品的特征在于。显微镜分析在球形UO2燃料颗粒内部显示微观裂缝的显微裂解,但确认燃料颗粒完全包封在Mo基质中。结果进一步显示了在高温氢测试期间发生的金属陶瓷样品中的质量损失,宏观溶胀和裂缝。由于缺陷和伴随微陶器,XRD在MO矩阵和UO2燃料结构中证实了纳米级肿胀。 (c)2020 Elsevier B.v.保留所有权利。

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