Muthu Shanmugam Mannan, Lee Hyeon-Bae, Okonkwo Bright O, Wang Dong, Jang Changheui, Na Taehyung
Department of Nuclear and Quantum Engineering, Korea Advanced Institute of Science and Technology, 291 Daehak-ro, Yuseong-gu, Daejeon 34141, Republic of Korea.
Institute of Corrosion Science and Technology, Guangzhou 510530, China.
Materials (Basel). 2023 Dec 11;16(24):7589. doi: 10.3390/ma16247589.
For the dry storage of Canada Deuterium Uranium (CANDU) spent nuclear fuels, the integrity of Zircaloy-4 fuel cladding has to be verified. However, the formation of ~10 µm-thick oxide layers in typical CANDU reactor operating conditions takes several years, which makes sample preparation a slow process. To overcome such limitations, in this study, an accelerated formation of an oxide layer on Zircaloy-4 cladding tube was developed with a combination of high-temperature water corrosion (HT-WC) and air oxidation (AO). First, Zircaloy-4 tubes were corroded in oxygenated (2 ppm dissolved oxygen) high-temperature water (360 °C/19.5 MPa) for 500 h. Then, the tubes were air-oxidized at 500 °C for 30 h. Finally, the tubes were corroded again in HT-WC for 500 h to produce ~10 µm-thick oxide layers. The morphology and characteristics of the oxide layer in each step were analyzed using X-ray diffraction, scanning and transmission electron microscopy. The results showed that the oxide layer formed in the accelerated method was comparable to that formed in HT-WC in terms of morphology and oxide phases. Thus, the accelerated oxide formation method can be used to prepare an oxidized Zircaloy-4 cladding tube for CANDU fuel integrity analysis.
对于加拿大重水铀反应堆(CANDU)乏核燃料的干式储存,必须验证锆合金-4燃料包壳的完整性。然而,在典型的CANDU反应堆运行条件下形成约10微米厚的氧化层需要数年时间,这使得样品制备过程缓慢。为了克服这些限制,在本研究中,通过高温水腐蚀(HT-WC)和空气氧化(AO)相结合的方法,开发了一种在锆合金-4包壳管上加速形成氧化层的方法。首先,将锆合金-4管在含氧(溶解氧2 ppm)的高温水(360°C/19.5 MPa)中腐蚀500小时。然后,将管子在500°C下进行空气氧化30小时。最后,将管子再次在HT-WC中腐蚀500小时,以产生约10微米厚的氧化层。使用X射线衍射、扫描和透射电子显微镜对每个步骤中氧化层的形态和特性进行了分析。结果表明,在加速方法中形成的氧化层在形态和氧化相方面与在HT-WC中形成的氧化层相当。因此,加速氧化形成方法可用于制备用于CANDU燃料完整性分析的氧化锆合金-4包壳管。