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Dual-Porosity (Ta(0.2)Nb(0.2)Ti(0.2)Zr(0.2)Hf(0.2))C High-Entropy Ceramics with High Compressive Strength and Low Thermal Conductivity Prepared by Pressureless Sintering

Porous (Ta(0.2)Nb(0.2)Ti(0.2)Zr(0.2)Hf(0.2))C high-entropy ceramics (HEC) with a dual-porosity structure were fabricated by pressureless sintering using a mixture powder of ceramic precursor and SiO(2) microspheres. The carbothermal reduction in the ceramic precursor led to the formation of pores wi...

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Autores principales: Yang, Qian, Li, Cuiyan, Ouyang, Haibo, Gao, Ruinan, Shen, Tianzhan, Huang, Jianfeng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10052925/
https://www.ncbi.nlm.nih.gov/pubmed/36984375
http://dx.doi.org/10.3390/ma16062495
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author Yang, Qian
Li, Cuiyan
Ouyang, Haibo
Gao, Ruinan
Shen, Tianzhan
Huang, Jianfeng
author_facet Yang, Qian
Li, Cuiyan
Ouyang, Haibo
Gao, Ruinan
Shen, Tianzhan
Huang, Jianfeng
author_sort Yang, Qian
collection PubMed
description Porous (Ta(0.2)Nb(0.2)Ti(0.2)Zr(0.2)Hf(0.2))C high-entropy ceramics (HEC) with a dual-porosity structure were fabricated by pressureless sintering using a mixture powder of ceramic precursor and SiO(2) microspheres. The carbothermal reduction in the ceramic precursor led to the formation of pores with sizes of 0.4–3 μm, while the addition of SiO(2) microspheres caused the appearance of pores with sizes of 20–50 μm. The porous HECs exhibit competitive thermal insulation (4.12–1.11 W·m(−1) k(−1)) and extraordinary compressive strength (133.1–41.9 MPa), which can be tailored by the porosity of the ceramics. The excellent properties are ascribed to the high-entropy effects and dual-porosity structures. The severe lattice distortions in the HECs lead to low intrinsic thermal conductivity and high compressive strength. The dual-porosity structure is efficient at phonon scattering and inhabiting crack propagations, which can further improve the thermal insulation and mechanical properties of the porous HECs.
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spelling pubmed-100529252023-03-30 Dual-Porosity (Ta(0.2)Nb(0.2)Ti(0.2)Zr(0.2)Hf(0.2))C High-Entropy Ceramics with High Compressive Strength and Low Thermal Conductivity Prepared by Pressureless Sintering Yang, Qian Li, Cuiyan Ouyang, Haibo Gao, Ruinan Shen, Tianzhan Huang, Jianfeng Materials (Basel) Article Porous (Ta(0.2)Nb(0.2)Ti(0.2)Zr(0.2)Hf(0.2))C high-entropy ceramics (HEC) with a dual-porosity structure were fabricated by pressureless sintering using a mixture powder of ceramic precursor and SiO(2) microspheres. The carbothermal reduction in the ceramic precursor led to the formation of pores with sizes of 0.4–3 μm, while the addition of SiO(2) microspheres caused the appearance of pores with sizes of 20–50 μm. The porous HECs exhibit competitive thermal insulation (4.12–1.11 W·m(−1) k(−1)) and extraordinary compressive strength (133.1–41.9 MPa), which can be tailored by the porosity of the ceramics. The excellent properties are ascribed to the high-entropy effects and dual-porosity structures. The severe lattice distortions in the HECs lead to low intrinsic thermal conductivity and high compressive strength. The dual-porosity structure is efficient at phonon scattering and inhabiting crack propagations, which can further improve the thermal insulation and mechanical properties of the porous HECs. MDPI 2023-03-21 /pmc/articles/PMC10052925/ /pubmed/36984375 http://dx.doi.org/10.3390/ma16062495 Text en © 2023 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
Yang, Qian
Li, Cuiyan
Ouyang, Haibo
Gao, Ruinan
Shen, Tianzhan
Huang, Jianfeng
Dual-Porosity (Ta(0.2)Nb(0.2)Ti(0.2)Zr(0.2)Hf(0.2))C High-Entropy Ceramics with High Compressive Strength and Low Thermal Conductivity Prepared by Pressureless Sintering
title Dual-Porosity (Ta(0.2)Nb(0.2)Ti(0.2)Zr(0.2)Hf(0.2))C High-Entropy Ceramics with High Compressive Strength and Low Thermal Conductivity Prepared by Pressureless Sintering
title_full Dual-Porosity (Ta(0.2)Nb(0.2)Ti(0.2)Zr(0.2)Hf(0.2))C High-Entropy Ceramics with High Compressive Strength and Low Thermal Conductivity Prepared by Pressureless Sintering
title_fullStr Dual-Porosity (Ta(0.2)Nb(0.2)Ti(0.2)Zr(0.2)Hf(0.2))C High-Entropy Ceramics with High Compressive Strength and Low Thermal Conductivity Prepared by Pressureless Sintering
title_full_unstemmed Dual-Porosity (Ta(0.2)Nb(0.2)Ti(0.2)Zr(0.2)Hf(0.2))C High-Entropy Ceramics with High Compressive Strength and Low Thermal Conductivity Prepared by Pressureless Sintering
title_short Dual-Porosity (Ta(0.2)Nb(0.2)Ti(0.2)Zr(0.2)Hf(0.2))C High-Entropy Ceramics with High Compressive Strength and Low Thermal Conductivity Prepared by Pressureless Sintering
title_sort dual-porosity (ta(0.2)nb(0.2)ti(0.2)zr(0.2)hf(0.2))c high-entropy ceramics with high compressive strength and low thermal conductivity prepared by pressureless sintering
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10052925/
https://www.ncbi.nlm.nih.gov/pubmed/36984375
http://dx.doi.org/10.3390/ma16062495
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