Determining the fracture strength and toughness of polarized GaN ceramics through the mean size of aggregates

The fracture strength and service life of ceramic components are closely related to their microstructures and intrinsic defects. In this paper, instead of pure data or curve fitting, the tensile strength and fracture toughness of GaN piezoelectric semi-conductive ceramics (PSCs) have been investigat...

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Main Authors: Qin, G.S., Guo, C.K., Zhao, M.H., Hu, X., Lu, Chunsheng
Format: Journal Article
Published: 2022
Online Access:http://hdl.handle.net/20.500.11937/89345
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author Qin, G.S.
Guo, C.K.
Zhao, M.H.
Hu, X.
Lu, Chunsheng
author_facet Qin, G.S.
Guo, C.K.
Zhao, M.H.
Hu, X.
Lu, Chunsheng
author_sort Qin, G.S.
building Curtin Institutional Repository
collection Online Access
description The fracture strength and service life of ceramic components are closely related to their microstructures and intrinsic defects. In this paper, instead of pure data or curve fitting, the tensile strength and fracture toughness of GaN piezoelectric semi-conductive ceramics (PSCs) have been investigated based on the boundary effect model for describing the size effect of quasi-brittle materials. It is shown that the fracture toughness of polarized or depolarized GaN PSCs can be fully determined by the tensile strength and the mean size of their aggregates which follow a normal distribution. The fracture strength of polarized GaN PSCs is higher than that of depolarized ones due to the refining of aggregates. It implies that polarization can be well applied to improve the fracture resistance and durability of GaN and other PSCs.
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format Journal Article
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institution Curtin University Malaysia
institution_category Local University
last_indexed 2025-11-14T11:31:31Z
publishDate 2022
recordtype eprints
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spelling curtin-20.500.11937-893452022-09-30T06:22:43Z Determining the fracture strength and toughness of polarized GaN ceramics through the mean size of aggregates Qin, G.S. Guo, C.K. Zhao, M.H. Hu, X. Lu, Chunsheng The fracture strength and service life of ceramic components are closely related to their microstructures and intrinsic defects. In this paper, instead of pure data or curve fitting, the tensile strength and fracture toughness of GaN piezoelectric semi-conductive ceramics (PSCs) have been investigated based on the boundary effect model for describing the size effect of quasi-brittle materials. It is shown that the fracture toughness of polarized or depolarized GaN PSCs can be fully determined by the tensile strength and the mean size of their aggregates which follow a normal distribution. The fracture strength of polarized GaN PSCs is higher than that of depolarized ones due to the refining of aggregates. It implies that polarization can be well applied to improve the fracture resistance and durability of GaN and other PSCs. 2022 Journal Article http://hdl.handle.net/20.500.11937/89345 10.1016/j.mtcomm.2022.104149 restricted
spellingShingle Qin, G.S.
Guo, C.K.
Zhao, M.H.
Hu, X.
Lu, Chunsheng
Determining the fracture strength and toughness of polarized GaN ceramics through the mean size of aggregates
title Determining the fracture strength and toughness of polarized GaN ceramics through the mean size of aggregates
title_full Determining the fracture strength and toughness of polarized GaN ceramics through the mean size of aggregates
title_fullStr Determining the fracture strength and toughness of polarized GaN ceramics through the mean size of aggregates
title_full_unstemmed Determining the fracture strength and toughness of polarized GaN ceramics through the mean size of aggregates
title_short Determining the fracture strength and toughness of polarized GaN ceramics through the mean size of aggregates
title_sort determining the fracture strength and toughness of polarized gan ceramics through the mean size of aggregates
url http://hdl.handle.net/20.500.11937/89345