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多弧离子镀技术制备锆合金-4表面Cr涂层的微观结构及高温抗氧化性能研究

Investigation on Microstructures and High-Temperature Oxidation Resistance of Cr Coatings on Zircaloy-4 by Multi-Arc Ion Plating Technology.

作者信息

Peng Yingbo, Du Peinan, Liu Yuxi, Wang Haijiang, Liu Shuyu, Zhang Wei

机构信息

State Key Laboratory of Powder Metallurgy, Central South University, Changsha 410083, China.

College of Engineering, Nanjing Agricultural University, Nanjing 210031, China.

出版信息

Materials (Basel). 2022 Sep 29;15(19):6755. doi: 10.3390/ma15196755.

Abstract

Introducing the oxidation-resistant coating on Zr alloy is considered to be one of the potential solutions for accident-tolerant fuel (ATF) materials. In this study, pure Cr coatings were prepared on a Zircaloy-4 (Zry-4) alloy surface by multi-arc ion plating under different process parameters. The ability of Cr coating on Zry-4 alloy cladding to improve the oxidation resistance to prevent a loss-of-coolant accident (LOCA) was studied. The microstructure of Cr coating was analyzed using the EBSD technique, and the high-temperature steam oxidation was tested at 800, 1000 and 1200 °C. Compared with the original Zry-4 alloy, the samples with Cr coatings exhibited much better oxidation resistance under different high-temperature steam oxidation conditions. However, the Cr coating exhibited columnar grain, strong preferred orientation and (001) fiber texture. The columnar grain boundaries provided paths for the diffusion of oxygen atoms to the Zry-4 alloy matrix at high temperatures. The results showed that the oxidation film of Cr coating with relatively random grain orientation was compact and uniform and exhibited the best oxidation resistance at high temperatures.

摘要

在锆合金上引入抗氧化涂层被认为是耐事故燃料(ATF)材料的潜在解决方案之一。在本研究中,通过多弧离子镀在不同工艺参数下在锆锡合金-4(Zry-4)合金表面制备了纯铬涂层。研究了Zry-4合金包壳上的铬涂层提高抗氧化性以防止冷却剂丧失事故(LOCA)的能力。使用电子背散射衍射(EBSD)技术分析了铬涂层的微观结构,并在800、1000和1200℃下进行了高温蒸汽氧化试验。与原始的Zry-4合金相比,带有铬涂层的样品在不同的高温蒸汽氧化条件下表现出更好的抗氧化性。然而,铬涂层呈现柱状晶粒、强烈的择优取向和(001)纤维织构。柱状晶界为高温下氧原子扩散到Zry-4合金基体提供了路径。结果表明,具有相对随机晶粒取向的铬涂层氧化膜致密且均匀,在高温下表现出最佳的抗氧化性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bec0/9573179/01172d992fd8/materials-15-06755-g001.jpg

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