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Zr-4合金表面耐事故Cr涂层制备及组织性能研究
作者:
作者单位:

1.西北有色金属研究院;2.中国核动力研究设计院

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基金项目:

陕西省自然科学基金,2020JM-649;科技部中乌国际合作项目,2014DFR50450;


Microstructure and properties of accident tolerant Cr coating synthesized on Zr-4 alloy
Author:
Affiliation:

1.Northwest Institute for Nonferrous Metal Research,Xi’an;2.Nuclear Power Institute of China,Chengdu

Fund Project:

Science Fund of Shannxi Province

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    摘要:

    在锆合金包壳表面制备保护性涂层材料能够改善现行核燃料组件的服役性能,延缓在>1200℃高温蒸汽下的锆水反应,提升其在反应堆失水事故下的容错能力。因此,涂层技术也被列为耐事故核反应堆设计和研究的短期规划。本文采用等离子增强物理气相复合沉积技术,在Zr-4合金表面制备了Cr复合涂层,并专门针对涂层与基体的界面进行了离子的轰击注入强化。结合锆合金包壳的实际使用工况,设计试验方法,评价表征了涂层体系的各项性能及其对锆合金基体的影响。高温蒸汽加速腐蚀试验表明,相比于无涂层Zr-4基体试样,Cr涂层明显阻碍了氧向Zr-4基体内部的扩散,并有效抑制了基体内部有害氢化物的生成。在模拟事故的>1000℃的高温热冲击条件下,相比于无涂层基体表面较厚氧化物生成的现象,涂层样品并未出现脱落,基体也并未出现氧化腐蚀。拉伸及内压爆破测试表明,样品表面Cr涂层表现出与基体较好的附着力,未出现沿破裂界面的脱落,也未影响Zr-4基体的拉伸及室温爆破性能。可以认为,Zr-4合金表面Cr涂层是理想的耐事故涂层材料之一。

    Abstract:

    The service performance of Zr alloy cladding can be enhanced by synthesizing a protective coating material on its surface, and also the zirconium-water reaction under steam higher than 1200℃ is delayed, so the accident tolerance of the current nuclear fuel assembly in the event of reactor loss of water is improved. Therefore, the coating technology is also listed as a short-term plan for the design and research of accident-tolerant nuclear reactors. In this study, a plasma enhanced physical vapor deposition technology was employed to prepare Cr coating on the surface of Zr-4 alloy, and ion bombardment and implantation was carried out specifically for the interface between coating and substrate. The properties of the coating system and its influence on the zirconium alloy matrix were evaluated. Compared with the uncoated Zr-4 substrate sample, the diffusion of oxygen into the Zr-4 substrate was obviously hindered and the formation of harmful hydrides was effectively inhibited in high temperature steam accelerated corrosion test by Cr coating. The Cr coated sample did not fall off, and the substrate was not be oxidized in the high temperature thermal shock test greater than 1000℃, but the uncoated substrate was totally oxidized. The tensile and internal pressure blasting tests also showed that the Cr coating exhibited good adhesion to the Zr-4 substrate, with little effect on mechanical properties of Zr-4 substrate. It can be considered that the Cr coating is one of the ideal accident-tolerant coating materials on Zr-4 cladding.

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王彦峰,耿娟娟,王毅飞,岳慧芳,高士鑫,李争显,张长伟. Zr-4合金表面耐事故Cr涂层制备及组织性能研究[J].稀有金属材料与工程,2021,50(9):3353~3360.[Yanfeng Wang, Juanjuan Geng, Yifei Wang, YUE Hui-fang, GAO Shi-xin, Zhengxian Li, Changwei Zhang. Microstructure and properties of accident tolerant Cr coating synthesized on Zr-4 alloy[J]. Rare Metal Materials and Engineering,2021,50(9):3353~3360.]
DOI:10.12442/j. issn.1002-185X.20210038

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  • 收稿日期:2021-01-13
  • 最后修改日期:2021-04-14
  • 录用日期:2021-05-12
  • 在线发布日期: 2021-09-27
  • 出版日期: 2021-09-24