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High-Temperature Cycling of Plasma Sprayed Multilayered NiCrAlY/YSZ/GZO/YAG Thermal Barrier Coatings Prepared from Liquid Feedstocks

High-enthalpy hybrid water/argon-stabilized plasma (WSP-H) torch may be used for efficient deposition of coatings from dry powders, suspensions, and solutions. WSP-H torch was used to deposit two complete thermal barrier coatings (TBCs) with multilayered top-coat. NiCrAlY was used as bond-coat and d...

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Autores principales: Musalek, Radek, Tesar, Tomas, Medricky, Jan, Lukac, Frantisek, Lima, Rogerio S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer US 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7608318/
http://dx.doi.org/10.1007/s11666-020-01107-5
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author Musalek, Radek
Tesar, Tomas
Medricky, Jan
Lukac, Frantisek
Lima, Rogerio S.
author_facet Musalek, Radek
Tesar, Tomas
Medricky, Jan
Lukac, Frantisek
Lima, Rogerio S.
author_sort Musalek, Radek
collection PubMed
description High-enthalpy hybrid water/argon-stabilized plasma (WSP-H) torch may be used for efficient deposition of coatings from dry powders, suspensions, and solutions. WSP-H torch was used to deposit two complete thermal barrier coatings (TBCs) with multilayered top-coat. NiCrAlY was used as bond-coat and deposited on nickel-based superalloy substrates. Top-coat consisted of up to three sublayers: (i) yttria-stabilized zirconia (ZrO(2)-8 wt.%Y(2)O(3)-YSZ) deposited from solution, (ii) gadolinium zirconate (Gd(2)Zr(2)O(7)-GZO) deposited from suspension, and (iii) optional yttrium aluminum garnet (Y(3)Al(5)O(12)-YAG) overlayer deposited from suspension. Each of the sublayers was intended to provide different functionalities, namely improved fracture toughness, low thermal conductivity, and high erosion resistance, respectively. High-temperature performance and thermal shock resistance of the deposited coatings were tested by thermal cycling fatigue “TCF” test (maximum temperature 1100 °C, 1 h dwell per cycle) and “laser-rig” test (maximum temperature ~ 1530 °C, 5 min dwell per cycle) exposing samples to isothermal and gradient thermal conditions, respectively. In both tests, coatings endured around 800 test cycles which shows great potential for further development of these layers and their application in demanding thermal conditions. Analysis of the samples after the test showed microstructural changes and identified reason of ultimate coating failure.
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spelling pubmed-76083182020-11-05 High-Temperature Cycling of Plasma Sprayed Multilayered NiCrAlY/YSZ/GZO/YAG Thermal Barrier Coatings Prepared from Liquid Feedstocks Musalek, Radek Tesar, Tomas Medricky, Jan Lukac, Frantisek Lima, Rogerio S. J Therm Spray Tech Peer Reviewed High-enthalpy hybrid water/argon-stabilized plasma (WSP-H) torch may be used for efficient deposition of coatings from dry powders, suspensions, and solutions. WSP-H torch was used to deposit two complete thermal barrier coatings (TBCs) with multilayered top-coat. NiCrAlY was used as bond-coat and deposited on nickel-based superalloy substrates. Top-coat consisted of up to three sublayers: (i) yttria-stabilized zirconia (ZrO(2)-8 wt.%Y(2)O(3)-YSZ) deposited from solution, (ii) gadolinium zirconate (Gd(2)Zr(2)O(7)-GZO) deposited from suspension, and (iii) optional yttrium aluminum garnet (Y(3)Al(5)O(12)-YAG) overlayer deposited from suspension. Each of the sublayers was intended to provide different functionalities, namely improved fracture toughness, low thermal conductivity, and high erosion resistance, respectively. High-temperature performance and thermal shock resistance of the deposited coatings were tested by thermal cycling fatigue “TCF” test (maximum temperature 1100 °C, 1 h dwell per cycle) and “laser-rig” test (maximum temperature ~ 1530 °C, 5 min dwell per cycle) exposing samples to isothermal and gradient thermal conditions, respectively. In both tests, coatings endured around 800 test cycles which shows great potential for further development of these layers and their application in demanding thermal conditions. Analysis of the samples after the test showed microstructural changes and identified reason of ultimate coating failure. Springer US 2020-11-03 2021 /pmc/articles/PMC7608318/ http://dx.doi.org/10.1007/s11666-020-01107-5 Text en © ASM International 2020 This article is made available via the PMC Open Access Subset for unrestricted research re-use and secondary analysis in any form or by any means with acknowledgement of the original source. These permissions are granted for the duration of the World Health Organization (WHO) declaration of COVID-19 as a global pandemic.
spellingShingle Peer Reviewed
Musalek, Radek
Tesar, Tomas
Medricky, Jan
Lukac, Frantisek
Lima, Rogerio S.
High-Temperature Cycling of Plasma Sprayed Multilayered NiCrAlY/YSZ/GZO/YAG Thermal Barrier Coatings Prepared from Liquid Feedstocks
title High-Temperature Cycling of Plasma Sprayed Multilayered NiCrAlY/YSZ/GZO/YAG Thermal Barrier Coatings Prepared from Liquid Feedstocks
title_full High-Temperature Cycling of Plasma Sprayed Multilayered NiCrAlY/YSZ/GZO/YAG Thermal Barrier Coatings Prepared from Liquid Feedstocks
title_fullStr High-Temperature Cycling of Plasma Sprayed Multilayered NiCrAlY/YSZ/GZO/YAG Thermal Barrier Coatings Prepared from Liquid Feedstocks
title_full_unstemmed High-Temperature Cycling of Plasma Sprayed Multilayered NiCrAlY/YSZ/GZO/YAG Thermal Barrier Coatings Prepared from Liquid Feedstocks
title_short High-Temperature Cycling of Plasma Sprayed Multilayered NiCrAlY/YSZ/GZO/YAG Thermal Barrier Coatings Prepared from Liquid Feedstocks
title_sort high-temperature cycling of plasma sprayed multilayered nicraly/ysz/gzo/yag thermal barrier coatings prepared from liquid feedstocks
topic Peer Reviewed
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7608318/
http://dx.doi.org/10.1007/s11666-020-01107-5
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