利用纳米粒子涂层防止核燃料材料粘附在手套箱部件上

T. Segawa, K. Kawaguchi, Katsunori Ishii, Masahiro Suzuki, Joji Tachihara, Kiyoto Takato, Takatoshi Okita, H. Satone, Michitaka Suzuki
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引用次数: 0

摘要

为减少核燃料材料在手套箱部件中的滞留,降低外照射剂量,研究了在手套箱亚克力板上涂纳米颗粒的钚铀混合氧化物粉末防粘技术。纳米颗粒涂层通过形成纳米尺寸的凹凸表面,降低了氧化铝颗粒与丙烯酸试件表面之间的范德华力。纳米颗粒涂层降低了二氧化铀颗粒与丙烯酸试件表面之间以粒径归一化的最小附着力,对于与解吸相关的最小颗粒约5 μm,该最小附着力降至5%左右。纳米颗粒涂层还可将丙烯酸试件上附着的钚、铀混合氧化物粉末量降低至10%左右。这项研究表明,将纳米颗粒涂层应用于手套箱的丙烯酸面板可以防止核燃料材料的粘附。这种方法有效地减少了核燃料材料在手套箱中的滞留,降低了外部照射剂量,提高了亚克力板的可视性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Preventing Nuclear Fuel Material Adhesion on Glove Box Components Using Nanoparticle Coating
To minimize retention of nuclear fuel materials in glove box components and curtail the external exposure dose, plutonium and uranium mixed oxide powder adhesion prevention technology involving nanoparticle coating of the acrylic panels of the glove box is developed. The nanoparticle coating reduces the van der Waals force between alumina particles and the acrylic test piece surface because of formation of nano-sized rugged surfaces. The nanoparticle coating reduces the minimum adhesion force normalized by the particle diameter between the uranium dioxide particle and the acrylic test piece surface, for the smallest particle of about 5 μm associated with desorption, this minimum adhesion force reduced to about 5%. The nanoparticle coating also lowers the adhered plutonium and uranium mixed oxide powder amounts on the acrylic test piece to about 10%. This study reveals that applying the nanoparticle coating to the acrylic panels of the glove box prevents adhesion of nuclear fuel materials. This method effectively reduces the retention of nuclear fuel materials in the glove box, lowers the external exposure dose, and improves the visibility of the acrylic panels.
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