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Hf微合金化对K4800合金氧化行为的影响
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1.东北大学;2.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52001314);国家科技重大专项资助(项目号J2019-Ⅶ-0002-0142, No. J2019-VI-0004-0118)


Effect of Hf Microalloying on the Oxidation Behavior of K4800 Nickel-Based Superalloy
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1.Northeastern University;2.IMR

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国家自然科学基金资助(项目号52001314);国家科技重大专项资助(项目号J2019-Ⅶ-0002-0142, No. J2019-VI-0004-0118)

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    摘要:

    研究了Hf微合金化对K4800镍基合金高温氧化行为的影响。结果表明,K4800和K4800+0.25Hf两种实验合金在800℃、850℃空气环境下恒温静态氧化过程中,氧化动力学曲线均符合抛物线规律,但是K4800+0.25Hf合金氧化初期的速率(800℃/20h为0.0265g/m2·h,850℃/20h为0.0617g/m2·h)低于K4800合金(800℃/20h为0.041g/m2·h,850℃/20h为0.0669g/m2·h)。两种实验合金的氧化层均由外氧化层与内氧化层构成,外氧化层以致密的Cr2O3为主,并会在Cr2O3外氧化层表面形成少量块状TiO2,内氧化层主要包含树根状分布的Al2O3。但随着合金中Hf含量从0wt.%增加到0.25wt.%,800℃静态氧化1000h后Cr2O3外氧化层平均厚度从2.71μm减小到2.17μm,850℃静态氧化1000h后从5.83μm减小到4.09μm。EPMA分析结果表明,Hf使K4800合金内氧化层晶界形成HfO2,促使Al2O3在HfO2周围形成并加速Al2O3的生长,晶界的Al2O3和HfO2有利于降低Cr3+向外扩散速率,延缓了Cr2O3氧化层厚度增加。因此,微量Hf添加有助于提高K4800合金的抗氧化性能。

    Abstract:

    As the thrust-to-weight ratio of the aero-engine increases, the turbine inlet temperature increases significantly, leading to a significant increase in the service temperature of other key hot-end components. In the process of service, nickel-based superalloys need to withstand the combined effect of high temperature, stress and environment, and the alloy surface will inevitably occur high temperature oxidation. High temperature oxidation often preferentially penetrates along grain boundaries, resulting in micro-voids and micro-cracks at grain boundaries, which seriously affects the properties of the alloy. Therefore, it is necessary to explore ways to improve the oxidation resistance of alloys at high temperatures. In this work, the effect of Hf on oxidation behavior of K4800 nickel-based superalloy was studied. The results show that the oxidation weight gain of K4800 and K4800+0.25Hf alloys increases with the extension of exposure time during static oxidation at 800℃ and 850℃, and the oxidation kinetics curves follow the parabola rule. However, the initial static oxidation rate of K4800+0.25Hf alloy (0.0265 g/m2·h at 800°C for 20 h and 0.0617 g/m2·h at 850°C for 20h) is lower than that of K4800 alloy (0.041 g/m2·h at 800°C and 0.0669 g/m2·h at 850°C). The oxide layer of the two experimental alloys comprises an outer oxide layer and an inner oxide layer.The outer oxide layer primarily consists of dense Cr2O3, while the inner oxide layer mainly contains dendritic Al2O3. However, with the Hf content increasing from 0 wt.% to 0.25 wt.%, the thickness of the Cr2O3 outer oxide layer decreases from 2.71 μm to 2.17 μm after oxidation at 800°C for 1000 h and from 5.83 μm to 4.09 μm after oxidation at 850°C for 1000 h.The results of EPMA analysis indicate the formation of HfO2 at the grain boundary of the oxide layer in the K4800+0.25Hf alloy, promoting the formation of Al2O3 around HfO2 and accelerating the growth of Al2O3. The presence of Al2O3 and HfO2 at the grain boundary contributes to reducing the outward diffusion rate of Cr3+ and delaying the thickening of the Cr2O3 oxide layer. Consequently, the addition of Hf enhances the oxidation resistance of the K4800 alloy.

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卢建强,王琳琳,欧美琼,侯坤磊,王旻,王平,马颖澈. Hf微合金化对K4800合金氧化行为的影响[J].稀有金属材料与工程,,().[lujianqiang, wanglinlin, oumeiqiong, houkunlei, wangmin, wangping, mayingche. Effect of Hf Microalloying on the Oxidation Behavior of K4800 Nickel-Based Superalloy[J]. Rare Metal Materials and Engineering,,().]
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  • 收稿日期:2024-03-07
  • 最后修改日期:2024-04-28
  • 录用日期:2024-05-08
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