Mechanical, Electrical and Thermal Properties of α/β SiAlON-SiC Composites Fabricated by Gas Pressure Sintering Method

α/β SiAlON-SiC composites were produced by coating SiAlON based spray dried granules with varying amounts of SiC (0-10 vol % SiC) following gas pressure sintering technique. A two step sintering schedule between 1940-1990°C under 10 MPa N2 gas pressure was designed in order to achieve high densifica...

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Main Author: Erhan AYAS
Format: Article
Language:English
Published: Anadolu University 2016-12-01
Series:Anadolu University Journal of Science and Technology. A : Applied Sciences and Engineering
Online Access:http://dergipark.gov.tr/aubtda/issue/26583/279850?publisher=anadolu
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spelling doaj-dc6b87d80b974eaa8cde09435170e5cb2020-11-24T20:59:11ZengAnadolu UniversityAnadolu University Journal of Science and Technology. A : Applied Sciences and Engineering1302-31602146-02052016-12-0117581282210.18038/aubtda.27985026Mechanical, Electrical and Thermal Properties of α/β SiAlON-SiC Composites Fabricated by Gas Pressure Sintering MethodErhan AYASα/β SiAlON-SiC composites were produced by coating SiAlON based spray dried granules with varying amounts of SiC (0-10 vol % SiC) following gas pressure sintering technique. A two step sintering schedule between 1940-1990°C under 10 MPa N2 gas pressure was designed in order to achieve high densification rate. All the composites and the reference SiAlON material were densified up to 99 %. α/β SiAlON - 10 vol. % SiC composite had the highest hardness value (Hv10: 16.33 GPa) due to the formation of α-SiAlON phases promoted with the increasing SiC content. No significant changes in the fracture toughness values of composites were observed. 3D segregated network of SiC particles along granules to establish electrical and thermal conductivity in the composites was successfully achieved with incorporation of 10 vol. % SiC. α/β SiAlON - 10 vol. % SiC composite exhibited the semiconductor characteristic and high thermal conductivity with the electrical resistivity of 102 Ω.m and thermal diffusivity of ~11 mm2/s measured at room temperature.http://dergipark.gov.tr/aubtda/issue/26583/279850?publisher=anadolu
collection DOAJ
language English
format Article
sources DOAJ
author Erhan AYAS
spellingShingle Erhan AYAS
Mechanical, Electrical and Thermal Properties of α/β SiAlON-SiC Composites Fabricated by Gas Pressure Sintering Method
Anadolu University Journal of Science and Technology. A : Applied Sciences and Engineering
author_facet Erhan AYAS
author_sort Erhan AYAS
title Mechanical, Electrical and Thermal Properties of α/β SiAlON-SiC Composites Fabricated by Gas Pressure Sintering Method
title_short Mechanical, Electrical and Thermal Properties of α/β SiAlON-SiC Composites Fabricated by Gas Pressure Sintering Method
title_full Mechanical, Electrical and Thermal Properties of α/β SiAlON-SiC Composites Fabricated by Gas Pressure Sintering Method
title_fullStr Mechanical, Electrical and Thermal Properties of α/β SiAlON-SiC Composites Fabricated by Gas Pressure Sintering Method
title_full_unstemmed Mechanical, Electrical and Thermal Properties of α/β SiAlON-SiC Composites Fabricated by Gas Pressure Sintering Method
title_sort mechanical, electrical and thermal properties of α/β sialon-sic composites fabricated by gas pressure sintering method
publisher Anadolu University
series Anadolu University Journal of Science and Technology. A : Applied Sciences and Engineering
issn 1302-3160
2146-0205
publishDate 2016-12-01
description α/β SiAlON-SiC composites were produced by coating SiAlON based spray dried granules with varying amounts of SiC (0-10 vol % SiC) following gas pressure sintering technique. A two step sintering schedule between 1940-1990°C under 10 MPa N2 gas pressure was designed in order to achieve high densification rate. All the composites and the reference SiAlON material were densified up to 99 %. α/β SiAlON - 10 vol. % SiC composite had the highest hardness value (Hv10: 16.33 GPa) due to the formation of α-SiAlON phases promoted with the increasing SiC content. No significant changes in the fracture toughness values of composites were observed. 3D segregated network of SiC particles along granules to establish electrical and thermal conductivity in the composites was successfully achieved with incorporation of 10 vol. % SiC. α/β SiAlON - 10 vol. % SiC composite exhibited the semiconductor characteristic and high thermal conductivity with the electrical resistivity of 102 Ω.m and thermal diffusivity of ~11 mm2/s measured at room temperature.
url http://dergipark.gov.tr/aubtda/issue/26583/279850?publisher=anadolu
work_keys_str_mv AT erhanayas mechanicalelectricalandthermalpropertiesofabsialonsiccompositesfabricatedbygaspressuresinteringmethod
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