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镍基高温合金Al-Si涂层1000℃抗高温氧化性能和退化机制研究
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1.天津职业技术师范大学 天津市高速切削与精密加工重点实验室;2.中国船舶集团有限公司七〇三研究所;3.中国科学院金属研究所

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国家自然科学基金资助(项目号51501130)天津市教委科研计划项目(Nos.2022ZD033, 2022ZD020), 天津市研究生创新基金(2021YJSS228),天津市科技计划项目(22YDTPJC00450),国家重点研发计划(2020YFB2010400)


High temperature oxidation resistance and degradation mechanism of Al-Si coatings on a nickel-based superalloy at 1000 °C
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1.Tianjin University of Technology and Education;2.No Research Institute of CSSC

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    摘要:

    为研究Si对简单NiAl涂层抗高温氧化性能的影响规律,改变料浆中Si/(Si+Al)比值(8wt.%、17wt.%和30wt.%),制备了三种不同Si含量的改性NiAl涂层。采用XRD、SEM、EPMA等表征方法分析了简单NiAl涂层和三种Si改性NiAl涂层氧化前后的相结构和显微组织。结果表明:四种铝化物涂层主要相均为δ-Ni2Al3和β-NiAl相。Si以CrSi2、Cr5Si3和Ni2Si硅化物的形式存在于涂层表层。在1000℃氧化500h后,简单NiAl涂层具有最大的氧化增重为1.93mg.cm-2,而Si/(Si+Al)比值为8wt.%的Si改性NiAl涂层具有最小的氧化增重。在NiAl涂层中掺杂Si可促进α-Al2O3膜的形成,通过形成硅化物减少难熔金属元素向涂层表面扩散,改善氧化膜表面质量,降低氧化速率。但是掺杂过量的Si会降低涂层表层Al含量,使涂层在氧化后期出现β相不足的问题,无法维持表面Al的选择性氧化。因此,当料浆中Si/(Si+Al)为8 wt.%,涂层表面Si含量为9.6 at.%时,涂层具有最高的抗高温氧化性能。

    Abstract:

    Si-modified NiAl coating has been studied by researchers due to its good performance in high temperature corrosive environment, but the effect of Si content on the high temperature oxidation resistance of the aluminide coatings has seldom studied systematically. To figure out this issue, three modified NiAl coatings with different Si contents were prepared by varying the Si/(Si+Al) ratios eg. 8 wt.%, 17 wt.% and 30 wt.% in the slurry. Phase structures and microstructures of the simple NiAl coatings and three Si-modified NiAl coatings before and after oxidation were analyzed using XRD, SEM and EPMA etc. Results show that the δ-Ni2Al3 and β-NiAl are the primary phases of the four aluminide coatings. Si mainly locates in the upper zone of the Si-modified NiAl coatings in the form of slilicides as CrSi2, Cr5Si3 and Ni2Si. After oxidation at 1000 °C for 500 h, the simple NiAl coating has the maximum weight gain of 1.93 mg/cm2, while the Si-modified NiAl coating with Si/(Si+Al) ratio of 8 wt.% has the smallest weight gain. The dopant of Si into NiAl coatings can promote the formation of protective α-Al2O3 film, retard the outward diffusion of refractory metal elements and improve the surface quality of the oxide film, resulting in reduced oxidation rate. However, the addition of Si reduces the Al content on the surface layer of the coating and may make the Al reservoir β phase insufficient to maintain the selective oxidation of Al in the later period of long-time oxidation. Therefore, when the Si/(Si+Al) is 8 wt.% and the Si content is 9.0 at.%, the Si modified NiAl coating possesses the best oxidation resistance.

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马德政,范其香,王铁钢,张超,于昊君.镍基高温合金Al-Si涂层1000℃抗高温氧化性能和退化机制研究[J].稀有金属材料与工程,2024,53(2):509~519.[MA Dezheng, FAN Qixiang, WANG Tiegang, ZHANG Chao, GONG Jun. High temperature oxidation resistance and degradation mechanism of Al-Si coatings on a nickel-based superalloy at 1000 °C[J]. Rare Metal Materials and Engineering,2024,53(2):509~519.]
DOI:10.12442/j. issn.1002-185X.20230042

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  • 收稿日期:2023-01-29
  • 最后修改日期:2023-03-22
  • 录用日期:2023-03-24
  • 在线发布日期: 2024-02-28
  • 出版日期: 2024-02-23