首页|IN718高温合金表面Si改性铝化物涂层1000℃的氧化行为和微观组织演变

IN718高温合金表面Si改性铝化物涂层1000℃的氧化行为和微观组织演变

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涡轮叶片的使用温度升高将严重降低镍基高温合金IN718的力学性能,高温合金表面需要制备抗氧化涂层来抵抗高温氧化和腐蚀的危害.本文系统研究了简单和Si改性铝化物涂层在1000℃下氧化200 h的微观结构演变.由于尖晶石NiCr2O4相和挥发性Cr3O相的形成,IN718高温合金经氧化后发生严重剥落和失效.对于简单铝化物涂层,稳定的α-Al2O3氧化膜显著提高了抗氧化性,在氧化100~200 h时仅增重0.1 mg/cm2.Si改性铝化物涂层由于外部涂层中存在Cr9.1Si0.9相并具有最大晶粒尺寸,表面快速形成了稳定的SiO2氧化膜,产生较好的保护作用,内部形成的Al2O3氧化物与涂层形成钉扎效应,有效地防止氧化膜分层.Ni3Si相的形成和生长产生了微裂纹,导致在氧化100~200 h时其增重率超过简单铝化物涂层,表明有效调节硅含量对于延长涡轮叶片的使用寿命至关重要.
Microstructure evolution and oxidation behavior of silicon-modified aluminide coatings on IN718 superalloy at 1000℃
Due to the increased service temperature of turbine blades,the high temperature conditions seriously deteriorate the mechanical properties of nickel-based superalloys,thus it is necessary to prepare the anti-oxidation coating.This research investigated the microstructure evolutions and oxidation behaviors of simple and silicon-modified aluminide coatings at 1000℃for 200 h.After oxidation,serious spalling out and failure appeared due to spinal NiCr2O4 and volatile Cr3O phase formation in the IN718 superalloy.For the aluminide coating,the formation of stable α-Al2O3 oxide film significantly improved the oxidation resistance,with a mass gain of only 0.1 mg/cm2 during the oxidation of 100-200 h.The silicon-modified aluminide coating exhibited the lowest mass gain,rapidly formed stable SiO2 oxide film due to the existence of the Cr9.1Si0.9 phase and maximum grain size in the external coating,and the internal Al2O3 oxide together with the coating formed the pinning effect,effectively preventing the delamination of the oxide film.However,the formation and growth of the Ni3Si phase generated microcracks,leading to its rate of mass gain surpassing that of aluminide coating during oxidation of 100-200 h,which illustrates that effectively regulating the Si content is imperative to prolonging the service life of turbine blades.

IN718 superalloyoxidationsilicon-modified aluminide coatingAl2O3

戴彦璋、邹俭鹏、宁小智、韦鸿铭、詹汶峄、李飞扬

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

Central Iron and Steel Research Institute,Beijing 100081,China

IN718高温合金 氧化 铝化物涂层 Al2O3

长沙市自然科学基金National Key Laboratory of Heavyduty Fast and Highpower Electric Locomotive Open Project Funding,China

kq2208270

2024

中南大学学报(英文版)
中南大学

中南大学学报(英文版)

CSTPCDEI
影响因子:0.47
ISSN:2095-2899
年,卷(期):2024.31(5)
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