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Exploration of Ion-Exchanged Glass for Seals Applications

机译:用于密封的离子交换玻璃的探索

摘要

As the nuclear industry grows around the globe, it brings with it a need for more safeguards and proliferation resistant technologies. The International Atomic Energy Agency (IAEA) depends on effective containment and surveillance (C/S) technologies and methods for maintaining continuity of knowledge over nuclear assets. Tags and seals, a subset of C/S technologies, are an area where innovation has been relatively stagnant for the past fifteen years. It is necessary to investigate technologies not previously used in this field in order to defend against emerging threats and methods of defeat. Based on a gap analysis of tags and seals currently being used by the IAEA, completed with the input of several subject matter experts, the technology selected for investigation was ion-exchanged glass. Ion-exchanged glass is relatively inexpensive, has high strength, and can be used in a variety of applications. If identical pieces of glass are exchanged under the same conditions and subjected to the same point load, the fracture patterns produced can be compared and used as a verification measure. This technology has the potential to be used in passive seal applications. Each image was categorized depending on its fracture as a "3 leaf" or "4 leaf" pattern. These two populations were separately analyzed and evaluated. Several methods used to analyze the fracture patterns involve the use of image analysis software such as ImageJ and the MATLAB Control Point Selection Tool. The statistical analysis software Minitab was used to validate the use of facture pattern analysis as verification tool. The analysis yielded a 60% verified comparison for samples demonstrating a "3 leaf" fracture pattern and a 78% verified comparison for samples with a "4 leaf" fracture pattern. This preliminary analysis provides a strong indication of the plausibility for the use of ion-exchanged glass as a verification measure for C/S measures and specifically tags and seals.
机译:随着核工业在全球范围内的发展,随之而来的是对更多保障和抗扩散技术的需求。国际原子能机构(IAEA)依靠有效的遏制和监视(C / S)技术和方法来维持关于核资产的知识的连续性。标签和印章是C / S技术的子集,在过去15年中,创新一直处于相对停滞的领域。有必要研究该领域以前未使用的技术,以防御新出现的威胁和失败方法。根据国际原子能机构目前正在使用的标签和封条的间隙分析,并在几名主题专家的投入下完成,选择用于研究的技术是离子交换玻璃。离子交换玻璃相对便宜,强度高,可用于多种应用。如果在相同条件下更换相同的玻璃片并承受相同的点载荷,则可以比较产生的断裂图案并将其用作验证措施。该技术具有在无源密封应用中使用的潜力。每个图像根据其断裂被分类为“ 3叶”或“ 4叶”模式。这两个人群分别进行了分析和评估。用于分析裂缝模式的几种方法涉及使用图像分析软件,例如ImageJ和MATLAB Control Point Selection Tool。使用统计分析软件Minitab来验证使用断裂模式分析作为验证工具。该分析对显示“ 3叶”断裂模式的样品进行了60%的验证比较,对“ 4叶”断裂模式的样品进行了78%的验证比较。初步分析强烈证明了使用离子交换玻璃作为C / S措施,特别是标签和密封的验证措施的合理性。

著录项

  • 作者

    Ghanbari Roushan;

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  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 en_US
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