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Comparison of Plasma sprayed high entropy alloys with conventional bond coat materials
Published in ASM International
2015
Volume: 1
   
Pages: 27 - 32
Abstract
High Entropy Alloys (HEAs) are a new class of alloys with multi-principle elements in an equi-atomic ratio that present novel phase structures. HEAs are known for their high temperature microstructural stability, enhanced oxidation and wear resistance properties. Apart from bulk material consolidation methods such as casting and sintering, HEAs can also be deposited as a surface coating. In this work, thermal sprayed HEA coatings are investigated as an alternative bond coat material for a thermal barrier coating system. Nanostructured HEAs that were based on AlCoCrFeNi and MnCoCrFeNi were prepared by ball milling and then plasma sprayed. Splat studies were assessed to optimize the appropriate thermal spray parameters and spray deposits were prepared. Subsequently, the microstructure and mechanical properties of two HEAs coatings of different composition were characterized and compared to conventional plasma spray NiCrAlY bond coats. © Copyright (2015) by ASM International All rights reserved.
About the journal
JournalProceedings of the International Thermal Spray Conference
PublisherASM International
Open AccessNo
Concepts (17)
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    Ball milling
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    Coatings
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    Entropy
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    Plasma jets
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    Plasma spraying
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    Sintering
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    Sprayed coatings
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    Wear resistance
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    BOND COAT MATERIALS
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    CONSOLIDATION METHODS
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    HIGH ENTROPY ALLOYS
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    MICROSTRUCTURAL STABILITY
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    Microstructure and mechanical properties
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    NICRALY BOND COATS
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    Resistance properties
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    THERMAL BARRIER COATING SYSTEMS
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    Thermal barrier coatings