...
首页> 外文期刊>Nuclear Materials and Energy >Microstructural, mechanical properties and high temperature oxidation of Cr, Al-coated Zr-4 alloy
【24h】

Microstructural, mechanical properties and high temperature oxidation of Cr, Al-coated Zr-4 alloy

机译:Cr,Al涂层Zr-4合金的微观结构,机械性能和高温氧化

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Cr and Al coating were respectively deposited on Zr-4 alloy by magnetron sputtering and high temperature oxidation (HTO) tests were conducted in air environment at 1200?°C for 3?h for Cr-coated and Al-coated specimens. The morphology and phase composition of the specimens were detected by SEM, EDS and XRD. The adhesion properties were characterized by scratch test. The XRD results revealed that the two coatings were crystalline with preferred orientation. The results of scratch testing showed that critical load of Cr coating was higher than that of Al coating. After HTO test, the Cr-coated specimen was intact without cracking and spalling off, only the outermost layer of Cr coating was oxidized to a Cr2O3layer of about 4?μm thick with a residual Cr layer of about 4?μm thick, and the internal zirconium alloy was not oxidized. For Al-coated specimen, besides the complete oxidation of the Al coating, there were also about 500?μm Zr-4 alloy oxidized on each side, and there were a lot of voids and cracks in the specimen. The EDS results indicated that a thickness of about 5?μm Cr-Zr diffusion layer developed at the interface between Cr coating and Zr-4 alloy for the Cr-coated Zr-4 specimen. While, for the Al-coated Zr-4 specimen, Al diffused into the specimen to a depth of about 100?μm, and Zr diffused almost to the outermost layer. Moreover, Sn in the Zr-4 alloy is concentrated at the interface between the residual Zr-4 alloy and ZrO2layer. The obtained results manifested that Cr coating shows better oxidation resistance than Al coating.
机译:Cr和Al涂层分别通过磁控溅射沉积在Zr-4合金上,通过磁控溅射,在空气环境中在1200℃下进行高温氧化(HTO)试验,对于Cr涂覆和涂层标本,在3℃下进行3℃。 SEM,EDS和XRD检测样品的形态和相组成。通过划伤测试表征粘合性能。 XRD结果表明,两种涂层是具有优选取向的结晶。划痕测试的结果表明Cr涂层的临界负荷高于Al涂层的临界负荷。在HTO测试之后,在没有开裂和剥离的情况下,Cr涂覆的样本完好无损,只有将Cr涂层的最外层涂覆到约4Ωμm厚的Cr2O3晶层,残留Cr层为约4Ωμm厚,内部锆合金未被氧化。对于Al涂覆的标本,除了Al涂层的完全氧化外,还有约500μmZr-4合金,每侧氧化,样品中存在大量空隙和裂缝。 EDS结果表明,在Cr涂层和Zr-4合金的界面中开发的厚度约为5?μmCr-Zr扩散层,用于CR涂层Zr-4样品。虽然,对于Al涂覆的Zr-4标本,Al扩散到样品中至约100?μm的深度,并且Zr几乎扩散到最外层。此外,Zr-4合金中的Sn浓缩在残留Zr-4合金和ZrO2晶层之间的界面处。所得结果表明Cr涂层显示出比Al涂层更好的抗氧化抗性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号