Fabrication and Sc-Refinement of SiCp/A356 Composites by Vacuum Stirring Casting Method

Aluminum matrix composites reinforced with 10 vol.% SiC particles (SiCp/Al MMCs) were prepared throughthe vacuum stirring method from SiC particles preoxidated at high temperature, followed by posttreatments of remelting and Sc addition treatment. Major problems during vacuum stirring preparation we...

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Main Authors: Fukun Chen, Kuangfei Wang
Format: Article
Language:English
Published: Wiley 2022-01-01
Series:Journal of Electrical and Computer Engineering
Online Access:http://dx.doi.org/10.1155/2022/5460706
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author Fukun Chen
Kuangfei Wang
author_facet Fukun Chen
Kuangfei Wang
author_sort Fukun Chen
collection DOAJ
description Aluminum matrix composites reinforced with 10 vol.% SiC particles (SiCp/Al MMCs) were prepared throughthe vacuum stirring method from SiC particles preoxidated at high temperature, followed by posttreatments of remelting and Sc addition treatment. Major problems during vacuum stirring preparation were investigated. Results show that overoxidation of SiC particles may occur during the vacuum stirring process, which causes loss of SiC particles and increases in “impurity pores” after solidification or aggregation of SiC particles, leading to scarcely improved mechanical properties of the prepared SiCp/Al composites. After Sc addition treatment, the α-Al and eutectic Si phases were obviously refined. The composite matrix was strengthened. The result indicates that the maximum tensile strength of 10 vol.% SiCp/A356 composites with Sc addition treatment was 193.5 MPa, which was increased by 43% compared with the matrix alloy. Moreover, a fracture at particles was detected after Sc addition treatment. The stress could be effectively transferred to the SiC particles when the fracture occurred.
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spelling doaj-art-b601cd1614ce4347bc4d40b12fce4be32025-02-03T01:08:47ZengWileyJournal of Electrical and Computer Engineering2090-01552022-01-01202210.1155/2022/5460706Fabrication and Sc-Refinement of SiCp/A356 Composites by Vacuum Stirring Casting MethodFukun Chen0Kuangfei Wang1School of Materials Science and EngineeringSchool of Materials Science and EngineeringAluminum matrix composites reinforced with 10 vol.% SiC particles (SiCp/Al MMCs) were prepared throughthe vacuum stirring method from SiC particles preoxidated at high temperature, followed by posttreatments of remelting and Sc addition treatment. Major problems during vacuum stirring preparation were investigated. Results show that overoxidation of SiC particles may occur during the vacuum stirring process, which causes loss of SiC particles and increases in “impurity pores” after solidification or aggregation of SiC particles, leading to scarcely improved mechanical properties of the prepared SiCp/Al composites. After Sc addition treatment, the α-Al and eutectic Si phases were obviously refined. The composite matrix was strengthened. The result indicates that the maximum tensile strength of 10 vol.% SiCp/A356 composites with Sc addition treatment was 193.5 MPa, which was increased by 43% compared with the matrix alloy. Moreover, a fracture at particles was detected after Sc addition treatment. The stress could be effectively transferred to the SiC particles when the fracture occurred.http://dx.doi.org/10.1155/2022/5460706
spellingShingle Fukun Chen
Kuangfei Wang
Fabrication and Sc-Refinement of SiCp/A356 Composites by Vacuum Stirring Casting Method
Journal of Electrical and Computer Engineering
title Fabrication and Sc-Refinement of SiCp/A356 Composites by Vacuum Stirring Casting Method
title_full Fabrication and Sc-Refinement of SiCp/A356 Composites by Vacuum Stirring Casting Method
title_fullStr Fabrication and Sc-Refinement of SiCp/A356 Composites by Vacuum Stirring Casting Method
title_full_unstemmed Fabrication and Sc-Refinement of SiCp/A356 Composites by Vacuum Stirring Casting Method
title_short Fabrication and Sc-Refinement of SiCp/A356 Composites by Vacuum Stirring Casting Method
title_sort fabrication and sc refinement of sicp a356 composites by vacuum stirring casting method
url http://dx.doi.org/10.1155/2022/5460706
work_keys_str_mv AT fukunchen fabricationandscrefinementofsicpa356compositesbyvacuumstirringcastingmethod
AT kuangfeiwang fabricationandscrefinementofsicpa356compositesbyvacuumstirringcastingmethod