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Preparation of In Situ Growth Multiscale β-Sialon Grain-Reinforced Al(2)O(3)-Based Composite Ceramic Tool Materials

A kind of multiscale β-sialon grain-reinforced Al(2)O(3) matrix composite ceramic tool material, named ASN, was prepared and studied. For the ASN, β-sialon (molecular formula: Si(4)Al(2)O(2)N(6)) was synthesized in situ by a hot-pressing and solid-solution reaction process. A total of six samples we...

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Detalles Bibliográficos
Autores principales: Zhu, Jian, Xue, Yunna, Bai, Xiaolan, Shen, Xuehui, He, Jianqun, Zhang, Yu, Li, Anhai
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10056539/
https://www.ncbi.nlm.nih.gov/pubmed/36984209
http://dx.doi.org/10.3390/ma16062333
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author Zhu, Jian
Xue, Yunna
Bai, Xiaolan
Shen, Xuehui
He, Jianqun
Zhang, Yu
Li, Anhai
author_facet Zhu, Jian
Xue, Yunna
Bai, Xiaolan
Shen, Xuehui
He, Jianqun
Zhang, Yu
Li, Anhai
author_sort Zhu, Jian
collection PubMed
description A kind of multiscale β-sialon grain-reinforced Al(2)O(3) matrix composite ceramic tool material, named ASN, was prepared and studied. For the ASN, β-sialon (molecular formula: Si(4)Al(2)O(2)N(6)) was synthesized in situ by a hot-pressing and solid-solution reaction process. A total of six samples were prepared at varying sintering temperatures and holding times under vacuum conditions. The solid solution reaction mechanism of β-sialon, the phase composition, mechanical properties, microstructure, and strengthening and toughening mechanisms of the composite ASN were investigated. As a result, within the experimental parameters, an optimal ASN tool material was obtained under a pressure of 32 MPa and at a temperature of 1550 °C for 20 min. The tested mechanical properties of the optimal sample were as follows: flexural strength 997 ± 59 MPa, fracture toughness 6.4 ± 0.3 MPa·m(1/2), Vickers hardness 18.2 ± 0.4 GPa, and relative density 98.1 ± 0.2%. According to crystal defect theory, the solid solution reaction mechanism of in-situ-synthesized β-sialon in an Al(2)O(3) matrix involves a double mechanism of unequivalence (or hetero-valence) and interstitial filling. The multiscale β-sialon grains mainly consisted of four grains, which were elongated β-sialon grains with a diameter of 0.3–0.4 μm and an aspect ratio of 6–9, elongated β-sialon grains with a diameter of 70 nm and an aspect ratio of 10, β-sialon whiskers with a diameter of 0.2 μm and an aspect ratio of 12–15, and intragranular β-sialon whiskers with a diameter of 70 nm. The mechanical properties were improved due to strengthening and toughening mechanisms, such as mixed structure mode (intergranular and transgranular), elongated grain pullout, interface bonding, crack reflection, pinning, and bridging.
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spelling pubmed-100565392023-03-30 Preparation of In Situ Growth Multiscale β-Sialon Grain-Reinforced Al(2)O(3)-Based Composite Ceramic Tool Materials Zhu, Jian Xue, Yunna Bai, Xiaolan Shen, Xuehui He, Jianqun Zhang, Yu Li, Anhai Materials (Basel) Article A kind of multiscale β-sialon grain-reinforced Al(2)O(3) matrix composite ceramic tool material, named ASN, was prepared and studied. For the ASN, β-sialon (molecular formula: Si(4)Al(2)O(2)N(6)) was synthesized in situ by a hot-pressing and solid-solution reaction process. A total of six samples were prepared at varying sintering temperatures and holding times under vacuum conditions. The solid solution reaction mechanism of β-sialon, the phase composition, mechanical properties, microstructure, and strengthening and toughening mechanisms of the composite ASN were investigated. As a result, within the experimental parameters, an optimal ASN tool material was obtained under a pressure of 32 MPa and at a temperature of 1550 °C for 20 min. The tested mechanical properties of the optimal sample were as follows: flexural strength 997 ± 59 MPa, fracture toughness 6.4 ± 0.3 MPa·m(1/2), Vickers hardness 18.2 ± 0.4 GPa, and relative density 98.1 ± 0.2%. According to crystal defect theory, the solid solution reaction mechanism of in-situ-synthesized β-sialon in an Al(2)O(3) matrix involves a double mechanism of unequivalence (or hetero-valence) and interstitial filling. The multiscale β-sialon grains mainly consisted of four grains, which were elongated β-sialon grains with a diameter of 0.3–0.4 μm and an aspect ratio of 6–9, elongated β-sialon grains with a diameter of 70 nm and an aspect ratio of 10, β-sialon whiskers with a diameter of 0.2 μm and an aspect ratio of 12–15, and intragranular β-sialon whiskers with a diameter of 70 nm. The mechanical properties were improved due to strengthening and toughening mechanisms, such as mixed structure mode (intergranular and transgranular), elongated grain pullout, interface bonding, crack reflection, pinning, and bridging. MDPI 2023-03-14 /pmc/articles/PMC10056539/ /pubmed/36984209 http://dx.doi.org/10.3390/ma16062333 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
Zhu, Jian
Xue, Yunna
Bai, Xiaolan
Shen, Xuehui
He, Jianqun
Zhang, Yu
Li, Anhai
Preparation of In Situ Growth Multiscale β-Sialon Grain-Reinforced Al(2)O(3)-Based Composite Ceramic Tool Materials
title Preparation of In Situ Growth Multiscale β-Sialon Grain-Reinforced Al(2)O(3)-Based Composite Ceramic Tool Materials
title_full Preparation of In Situ Growth Multiscale β-Sialon Grain-Reinforced Al(2)O(3)-Based Composite Ceramic Tool Materials
title_fullStr Preparation of In Situ Growth Multiscale β-Sialon Grain-Reinforced Al(2)O(3)-Based Composite Ceramic Tool Materials
title_full_unstemmed Preparation of In Situ Growth Multiscale β-Sialon Grain-Reinforced Al(2)O(3)-Based Composite Ceramic Tool Materials
title_short Preparation of In Situ Growth Multiscale β-Sialon Grain-Reinforced Al(2)O(3)-Based Composite Ceramic Tool Materials
title_sort preparation of in situ growth multiscale β-sialon grain-reinforced al(2)o(3)-based composite ceramic tool materials
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10056539/
https://www.ncbi.nlm.nih.gov/pubmed/36984209
http://dx.doi.org/10.3390/ma16062333
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