Study on the Effect of High-Temperature Oxidation on the Phases of NiCrAlY-Cr Coatings with Different Thicknesses

In order to clarify the influence mechanism of Cr diffusion barrier layer on the oxidation performance of NiCrAlY coating under high temperature conditions, NiCrAlY coatings and NiCrAlY-Cr composite coatings with Cr barrier layers of different design thicknesses (50, 100,150 μm) were prepared using...

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Main Author: CHEN Jiao, CHAI Yan, WANG Jianfeng, ZHANG Yao, CAO Zheng, FANG Ziwen, ZHANG Zhaolu, WANG Yuanyuan, HE Ni
Format: Article
Language:zho
Published: Editorial Department of Materials Protection 2025-03-01
Series:Cailiao Baohu
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Online Access:http://www.mat-pro.com/fileup/1001-1560/PDF/20250311.pdf
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_version_ 1850201989621743616
author CHEN Jiao, CHAI Yan, WANG Jianfeng, ZHANG Yao, CAO Zheng, FANG Ziwen, ZHANG Zhaolu, WANG Yuanyuan, HE Ni
author_facet CHEN Jiao, CHAI Yan, WANG Jianfeng, ZHANG Yao, CAO Zheng, FANG Ziwen, ZHANG Zhaolu, WANG Yuanyuan, HE Ni
author_sort CHEN Jiao, CHAI Yan, WANG Jianfeng, ZHANG Yao, CAO Zheng, FANG Ziwen, ZHANG Zhaolu, WANG Yuanyuan, HE Ni
collection DOAJ
description In order to clarify the influence mechanism of Cr diffusion barrier layer on the oxidation performance of NiCrAlY coating under high temperature conditions, NiCrAlY coatings and NiCrAlY-Cr composite coatings with Cr barrier layers of different design thicknesses (50, 100,150 μm) were prepared using plasma spraying technology.The phase composition changes of the coatings were analyzed using X-ray diffraction(XRD), while the microstructure of the coatings was examined using scanning electron microscopy (SEM).The element distribution in the coatings and oxidation layers was analyzed by energy dispersive spectrometer (EDS) attached to the SEM.The high-temperature oxidation behavior of NiCrAlY-Cr coatings with different thicknesses of Cr barrier layers was investigated.Results showed that both the deposited NiCrAlY and NiCrAlY-Cr coatings were mainly composed of Ni3Al.After oxidation at 850 °C for 30 h, both NiCrAlY and NiCrAlY-Cr coatings formed α-Al2O3 and Cr2O3 on their surfaces.When the oxidation temperature was increased to 950 °C, after 30 h of oxidation, all three NiCrAlY-Cr composite coatings with different Cr barrier layer thicknesses showed a dominant Ni3Al phase on their surfaces, along with the formation of α-Al2O3, Cr2O3, and characteristic diffraction peaks of NiCr2O4.After 65 h of oxidation at 850 °C, the main phases in NiCrAlY and NiCrAlYCr composite coatings with different thicknesses of Cr barrier layers were α-Al2O3, Cr2O3, NiCr2O4 and Ni3Al.With the extension of oxidation time to 100 h, the phases in the NiCrAlY coatings and NiCrAlY-Cr composite coatings with Cr barrier layers of different design thicknesses remained dominated by α-Al2O3, Cr2O3, NiCr2O4 and Ni3Al after oxidation at both 850 °C and 950 °C.The dense protective layer formed by α-Al2O3, Cr2O3 and NiCr2O4 on the surface of NiCrAlY-Cr coatings in high-temperature environments provided significantly better high-temperature oxidation resistance compared to NiCrAlY coatings.
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publishDate 2025-03-01
publisher Editorial Department of Materials Protection
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series Cailiao Baohu
spelling doaj-art-4b26038eaf3d4876b823c830ed8f4bca2025-08-20T02:11:54ZzhoEditorial Department of Materials ProtectionCailiao Baohu1001-15602025-03-0158310612010.16577/j.issn.1001-1560.2025.0047Study on the Effect of High-Temperature Oxidation on the Phases of NiCrAlY-Cr Coatings with Different ThicknessesCHEN Jiao, CHAI Yan, WANG Jianfeng, ZHANG Yao, CAO Zheng, FANG Ziwen, ZHANG Zhaolu, WANG Yuanyuan, HE Ni0(1.China Aerospace Science and Industry Corporation Power Co., Ltd., Xi’an 710016, China;2a.School of Materials Science and Engineering, 2b.School of Mechanical Engineering, Xi’an Jiaotong University, Xi'an 710049, China;3.College of Aeronautical Engineering, Air Force Engineering University, Xi’an 710038, China)In order to clarify the influence mechanism of Cr diffusion barrier layer on the oxidation performance of NiCrAlY coating under high temperature conditions, NiCrAlY coatings and NiCrAlY-Cr composite coatings with Cr barrier layers of different design thicknesses (50, 100,150 μm) were prepared using plasma spraying technology.The phase composition changes of the coatings were analyzed using X-ray diffraction(XRD), while the microstructure of the coatings was examined using scanning electron microscopy (SEM).The element distribution in the coatings and oxidation layers was analyzed by energy dispersive spectrometer (EDS) attached to the SEM.The high-temperature oxidation behavior of NiCrAlY-Cr coatings with different thicknesses of Cr barrier layers was investigated.Results showed that both the deposited NiCrAlY and NiCrAlY-Cr coatings were mainly composed of Ni3Al.After oxidation at 850 °C for 30 h, both NiCrAlY and NiCrAlY-Cr coatings formed α-Al2O3 and Cr2O3 on their surfaces.When the oxidation temperature was increased to 950 °C, after 30 h of oxidation, all three NiCrAlY-Cr composite coatings with different Cr barrier layer thicknesses showed a dominant Ni3Al phase on their surfaces, along with the formation of α-Al2O3, Cr2O3, and characteristic diffraction peaks of NiCr2O4.After 65 h of oxidation at 850 °C, the main phases in NiCrAlY and NiCrAlYCr composite coatings with different thicknesses of Cr barrier layers were α-Al2O3, Cr2O3, NiCr2O4 and Ni3Al.With the extension of oxidation time to 100 h, the phases in the NiCrAlY coatings and NiCrAlY-Cr composite coatings with Cr barrier layers of different design thicknesses remained dominated by α-Al2O3, Cr2O3, NiCr2O4 and Ni3Al after oxidation at both 850 °C and 950 °C.The dense protective layer formed by α-Al2O3, Cr2O3 and NiCr2O4 on the surface of NiCrAlY-Cr coatings in high-temperature environments provided significantly better high-temperature oxidation resistance compared to NiCrAlY coatings.http://www.mat-pro.com/fileup/1001-1560/PDF/20250311.pdfplasma sprayed; nicraly-cr; barrier layer; high temperature oxidation
spellingShingle CHEN Jiao, CHAI Yan, WANG Jianfeng, ZHANG Yao, CAO Zheng, FANG Ziwen, ZHANG Zhaolu, WANG Yuanyuan, HE Ni
Study on the Effect of High-Temperature Oxidation on the Phases of NiCrAlY-Cr Coatings with Different Thicknesses
Cailiao Baohu
plasma sprayed; nicraly-cr; barrier layer; high temperature oxidation
title Study on the Effect of High-Temperature Oxidation on the Phases of NiCrAlY-Cr Coatings with Different Thicknesses
title_full Study on the Effect of High-Temperature Oxidation on the Phases of NiCrAlY-Cr Coatings with Different Thicknesses
title_fullStr Study on the Effect of High-Temperature Oxidation on the Phases of NiCrAlY-Cr Coatings with Different Thicknesses
title_full_unstemmed Study on the Effect of High-Temperature Oxidation on the Phases of NiCrAlY-Cr Coatings with Different Thicknesses
title_short Study on the Effect of High-Temperature Oxidation on the Phases of NiCrAlY-Cr Coatings with Different Thicknesses
title_sort study on the effect of high temperature oxidation on the phases of nicraly cr coatings with different thicknesses
topic plasma sprayed; nicraly-cr; barrier layer; high temperature oxidation
url http://www.mat-pro.com/fileup/1001-1560/PDF/20250311.pdf
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