首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Influences of MCrAlY coatings on oxidation resistance of single crystal superalloy DD98M and their inter-diffusion behaviors
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Influences of MCrAlY coatings on oxidation resistance of single crystal superalloy DD98M and their inter-diffusion behaviors

机译:MCrAlY涂层对DD98M单晶高温合金抗氧化性能及其相互扩散行为的影响

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Oxidation and interdiffusion behaviors of Ni-based single crystal superalloy DD98M with nominal compositions Ni-5.0Co-6.0Cr-6.3Al-6.0W-2.0Mo-6.0Ta-1.0Ti (in wt.%) and two types of MCrAlY coatings at 1000 degrees C and 1050 degrees C were investigated. Complex oxides formed on the surface of DD98M alloy when oxidized at 1000 degrees C and 1050 degrees C, which stratified, cracked and spalled. The faceted-like AlN and the particle-like and strip-like TiN formed in the alloy. The application of the NiCrAlY and NiCoCrAlYHfSi coatings greatly improved the oxidation resistance of DD98M alloy. After 500 h oxidation, alpha-Al2O3 was still the dominate phase in the oxide scales formed on the coated specimens. The adhesion of the oxide scale on the NiCoCrAlYHfSi coating was much better than that on the NiCrAlY coating. Inter-diffusion occurred between the coatings and the substrate, which led to the formation of the IDZ and SRZ. The IDZ of the NiCrAlY coated specimen was composed of gamma phase and Al- and Ta-rich gamma' phase. The gamma' phase in the IDZ accommodated most of the inward diffusing aluminum, so the SRZ formation was suppressed when oxidized at 1050 degrees C. However the formation of SRZ with m-TCP still occurred when oxidized at 1000 degrees C probably due to the low solubility and slow diffusion rate of the alloying elements at lower temperature. The IDZ of the NiCoCrAlYHfSi coated specimen was a single g phase. A large amount of m-TCP precipitated in the SRZ of the NiCoCrAlYHfSi coated specimen when oxidized at 1000 degrees C and 1050 degrees C. It can be concluded coating composition has a significant effect on the development of the IDZ and SRZ. Thermal exposure temperature also has influences on the formation of the SRZ. The mechanism of SRZ formation and TCP precipitation are discussed. (C) 2015 Elsevier B.V. All rights reserved.
机译:标称成分为Ni-5.0Co-6.0Cr-6.3Al-6.0W-2.0Mo-6.0Ta-1.0Ti(按重量%)和两种MCrAlY涂层的Ni基单晶高温合金DD98M的氧化和相互扩散行为研究了1000℃和1050℃。 DD98M合金在1000摄氏度和1050摄氏度氧化时形成的复合氧化物会分层,破裂和剥落。合金中形成有小面状的AlN以及颗粒状和条状的TiN。 NiCrAlY和NiCoCrAlYHfSi涂层的应用大大提高了DD98M合金的抗氧化性。氧化500小时后,在涂层样品上形成的氧化皮中,α-Al2O3仍是主要相。 NiCoCrAlYHfSi涂层上的氧化皮附着力比NiCrAlY涂层上的好。涂层与基材之间发生相互扩散,导致形成IDZ和SRZ。 NiCrAlY涂层试样的IDZ由γ相以及富含Al和Ta的γ′相组成。 IDZ中的γ'相容纳了大部分向内扩散的铝,因此在1050℃下氧化时SRZ的形成受到抑制。但是,在1000℃下氧化时仍会发生m-TCP形成SRZ。合金元素在较低温度下的溶解度和缓慢扩散速率。 NiCoCrAlYHfSi涂层试样的IDZ为单g相。 NiCoCrAlYHfSi涂层试样在1000℃和1050℃下氧化时,大量s-TCP沉淀在SRZ中。可以得出结论,涂层组成对IDZ和SRZ的形成有重要影响。热暴露温度也会影响SRZ的形成。讨论了SRZ形成和TCP沉淀的机理。 (C)2015 Elsevier B.V.保留所有权利。

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