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Phase Evaluation, Mechanical Properties and Thermal Behavior of Hot-Pressed LC-YSZ Composites for TBC Applications

In this work, La(2)Ce(2)O(7)-yttria-stabilized zirconia (LC-YSZ) composites with different weight fractions of YSZ (40–70 wt.%) were prepared by hot pressing at 1400 °C and investigated as a material for thermal barrier-coating (TBC) applications. For this purpose, the effect of YSZ addition on the...

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Autores principales: Parchovianský, Milan, Parchovianská, Ivana, Hanzel, Ondrej, Netriová, Zuzana, Pakseresht, Amirhossein
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9025509/
https://www.ncbi.nlm.nih.gov/pubmed/35454532
http://dx.doi.org/10.3390/ma15082839
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author Parchovianský, Milan
Parchovianská, Ivana
Hanzel, Ondrej
Netriová, Zuzana
Pakseresht, Amirhossein
author_facet Parchovianský, Milan
Parchovianská, Ivana
Hanzel, Ondrej
Netriová, Zuzana
Pakseresht, Amirhossein
author_sort Parchovianský, Milan
collection PubMed
description In this work, La(2)Ce(2)O(7)-yttria-stabilized zirconia (LC-YSZ) composites with different weight fractions of YSZ (40–70 wt.%) were prepared by hot pressing at 1400 °C and investigated as a material for thermal barrier-coating (TBC) applications. For this purpose, the effect of YSZ addition on the phase composition, microstructure, mechanical performance and thermal behavior was studied. X-ray diffraction analysis showed that the LC-YSZ composites were mainly composed of a cubic ZrO(2) and La(2)O(3)-CeO(2)-ZrO(2) solid solution with a pyrochlore structure, indicating that the reaction between LC and YSZ took place during hot pressing. Scanning electron microscopy revealed the high microstructural stability of the prepared composites, as the pore formation was significantly controlled and a high relative density (>97%) was obtained. The microstructure of LC-YSZ bulk samples was relatively fine-grained, with an average grain size below or very close to 1 µm. YSZ doping improved the Vickers hardness of the LC-YSZ composites; the highest hardness, with value of 12 ± 0.62 GPa, was achieved for the composite containing 70 wt.% of YSZ. The fracture toughness of LC-YSZ composites was in the range from 2.13 to 2.5 MPa·m(1/2). No statistically significant difference in heat capacity or thermal conductivity was found between the composites with different content of YSZ. The results showed that LC-YSZ composites have relatively low thermal conductivities from room temperature (1.5–1.8 W·m(−1)·K(−1)) up to 1000 °C (2.5–3.0 W·m(−1)·K(−1)). This indicates that the prepared LC-YSZ composite materials are promising candidates for TBC applications.
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spelling pubmed-90255092022-04-23 Phase Evaluation, Mechanical Properties and Thermal Behavior of Hot-Pressed LC-YSZ Composites for TBC Applications Parchovianský, Milan Parchovianská, Ivana Hanzel, Ondrej Netriová, Zuzana Pakseresht, Amirhossein Materials (Basel) Article In this work, La(2)Ce(2)O(7)-yttria-stabilized zirconia (LC-YSZ) composites with different weight fractions of YSZ (40–70 wt.%) were prepared by hot pressing at 1400 °C and investigated as a material for thermal barrier-coating (TBC) applications. For this purpose, the effect of YSZ addition on the phase composition, microstructure, mechanical performance and thermal behavior was studied. X-ray diffraction analysis showed that the LC-YSZ composites were mainly composed of a cubic ZrO(2) and La(2)O(3)-CeO(2)-ZrO(2) solid solution with a pyrochlore structure, indicating that the reaction between LC and YSZ took place during hot pressing. Scanning electron microscopy revealed the high microstructural stability of the prepared composites, as the pore formation was significantly controlled and a high relative density (>97%) was obtained. The microstructure of LC-YSZ bulk samples was relatively fine-grained, with an average grain size below or very close to 1 µm. YSZ doping improved the Vickers hardness of the LC-YSZ composites; the highest hardness, with value of 12 ± 0.62 GPa, was achieved for the composite containing 70 wt.% of YSZ. The fracture toughness of LC-YSZ composites was in the range from 2.13 to 2.5 MPa·m(1/2). No statistically significant difference in heat capacity or thermal conductivity was found between the composites with different content of YSZ. The results showed that LC-YSZ composites have relatively low thermal conductivities from room temperature (1.5–1.8 W·m(−1)·K(−1)) up to 1000 °C (2.5–3.0 W·m(−1)·K(−1)). This indicates that the prepared LC-YSZ composite materials are promising candidates for TBC applications. MDPI 2022-04-12 /pmc/articles/PMC9025509/ /pubmed/35454532 http://dx.doi.org/10.3390/ma15082839 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Parchovianský, Milan
Parchovianská, Ivana
Hanzel, Ondrej
Netriová, Zuzana
Pakseresht, Amirhossein
Phase Evaluation, Mechanical Properties and Thermal Behavior of Hot-Pressed LC-YSZ Composites for TBC Applications
title Phase Evaluation, Mechanical Properties and Thermal Behavior of Hot-Pressed LC-YSZ Composites for TBC Applications
title_full Phase Evaluation, Mechanical Properties and Thermal Behavior of Hot-Pressed LC-YSZ Composites for TBC Applications
title_fullStr Phase Evaluation, Mechanical Properties and Thermal Behavior of Hot-Pressed LC-YSZ Composites for TBC Applications
title_full_unstemmed Phase Evaluation, Mechanical Properties and Thermal Behavior of Hot-Pressed LC-YSZ Composites for TBC Applications
title_short Phase Evaluation, Mechanical Properties and Thermal Behavior of Hot-Pressed LC-YSZ Composites for TBC Applications
title_sort phase evaluation, mechanical properties and thermal behavior of hot-pressed lc-ysz composites for tbc applications
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9025509/
https://www.ncbi.nlm.nih.gov/pubmed/35454532
http://dx.doi.org/10.3390/ma15082839
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