Corroborating Laser Shock Interface Characterization with Peel Testing

James Smith, Bradely Benefiel, S. Evans, C. C. Merriman, Kennth Johnson, T. Roosendaal
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Abstract

Currently, there is no established testing technique that can characterize the aluminum-cladding interface of fuel plates. The Laser Shock and Peel test methods are two interface characterization techniques that are being developed at Idaho National Laboratory and Pacific Northwest National Laboratory to measure the bond strength of the cladding-cladding interface. The commercial fabrication process to bond two aluminum substrates together for a new nuclear plate fuel system being developed for U.S. research reactors is undergoing a scale-up process. The interface strengths within the resulting plates need to be characterized to ensure the production process will produce claddings that will contain the swelling of the nuclear fuel foil and the resulting fission gasses. , respectively, to perform these measurements. In absence of a standard technique, The goal of our work is to corroborate the two characterization techniques with data from a number of samples with variable bond strength.
用剥离试验确证激光冲击界面表征
目前,还没有成熟的测试技术可以表征燃料板的铝包层界面。激光冲击和剥离测试方法是爱达荷国家实验室和太平洋西北国家实验室正在开发的两种界面表征技术,用于测量包层-包层界面的结合强度。为美国研究反应堆开发的新型核板燃料系统,将两个铝基板粘合在一起的商业制造工艺正在进行扩大规模的过程。需要对最终板内的界面强度进行表征,以确保生产过程中产生的包层将包含核燃料箔的膨胀和由此产生的裂变气体。,分别执行这些测量。在缺乏标准技术的情况下,我们工作的目标是用来自许多具有可变键强度的样品的数据来证实这两种表征技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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