Distribution of SiC particles in semisolid electromagnetic-mechanical stir-casting Al-SiC composite

The distribution of SiC particles in Al-SiC composite can greatly influence the mechanical performances of Al-SiC composite. To realize the homogeneous distribution of SiC particles in stir-casting Al-SiC composite, semisolid stir casting of Al-4.25vol.%SiC composite was conducted using a special...

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Main Authors: Yun-hui Du, *Peng Zhang, Wei-yi Zhang
Format: Article
Language:English
Published: Foundry Journal Agency 2018-09-01
Series:China Foundry
Subjects:
Online Access:http://ff.foundryworld.com/uploadfile/2018092031440415.pdf
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spelling doaj-64faf2f9d98449b4b7544531691b20f82020-11-24T22:09:56ZengFoundry Journal AgencyChina Foundry1672-64211672-64212018-09-0115535135710.1007/s41230-018-8086-2Distribution of SiC particles in semisolid electromagnetic-mechanical stir-casting Al-SiC compositeYun-hui Du0*Peng Zhang1Wei-yi Zhang2School of Mechanical, Electronic and Control Engineering, Beijing Jiaotong University, Beijing 100044, ChinaSchool of Mechanical, Electronic and Control Engineering, Beijing Jiaotong University, Beijing 100044, ChinaSchool of Mechanical, Electronic and Control Engineering, Beijing Jiaotong University, Beijing 100044, ChinaThe distribution of SiC particles in Al-SiC composite can greatly influence the mechanical performances of Al-SiC composite. To realize the homogeneous distribution of SiC particles in stir-casting Al-SiC composite, semisolid stir casting of Al-4.25vol.%SiC composite was conducted using a special electromagneticmechanical stirring equipment made by our team, in which there are three uniformly-distributed blades with a horizontal tilt angle of 25 ° to mechanically raise the SiC particles by creating an upward movement of slurry under electromagnetic stirring. The microstructure of the as-cast Al-SiC composites was observed by Scanning Electron Mcroscopy (SEM). The volume fraction of SiC particles was measured by image analysis using the Quantimet 520 Image Processing and Analysis System. The tensile strength of the Al-4.25vol.%SiC composites was measured by tensile testing. Results show that the Al-4.25vol.%SiC composites with the homogeneous distrbutin of SiC particles can be obtained by the electromagnetic-mechanical stirring casting with the speed of 300 and 600 r·min−1 at 620 °C. The differences between the volume fraction of SiC particles at the top of ingot and that at the bottom are both ~0.04vol.% with the stirring speed of 300 and 600 r·min−1, which are so small that the distribution of SiC particles can be seen as the homogeneous. The tensile strength of the Al matrix is enhanced by 51.2% due to the uniformly distributed SiC particles. The porosity of the composite mainly results from the solidifi cation shrinkage of slurry and it is less than 0.04vol.%.http://ff.foundryworld.com/uploadfile/2018092031440415.pdfAl-SiC compositestir castingparticle distributionmicrostructure
collection DOAJ
language English
format Article
sources DOAJ
author Yun-hui Du
*Peng Zhang
Wei-yi Zhang
spellingShingle Yun-hui Du
*Peng Zhang
Wei-yi Zhang
Distribution of SiC particles in semisolid electromagnetic-mechanical stir-casting Al-SiC composite
China Foundry
Al-SiC composite
stir casting
particle distribution
microstructure
author_facet Yun-hui Du
*Peng Zhang
Wei-yi Zhang
author_sort Yun-hui Du
title Distribution of SiC particles in semisolid electromagnetic-mechanical stir-casting Al-SiC composite
title_short Distribution of SiC particles in semisolid electromagnetic-mechanical stir-casting Al-SiC composite
title_full Distribution of SiC particles in semisolid electromagnetic-mechanical stir-casting Al-SiC composite
title_fullStr Distribution of SiC particles in semisolid electromagnetic-mechanical stir-casting Al-SiC composite
title_full_unstemmed Distribution of SiC particles in semisolid electromagnetic-mechanical stir-casting Al-SiC composite
title_sort distribution of sic particles in semisolid electromagnetic-mechanical stir-casting al-sic composite
publisher Foundry Journal Agency
series China Foundry
issn 1672-6421
1672-6421
publishDate 2018-09-01
description The distribution of SiC particles in Al-SiC composite can greatly influence the mechanical performances of Al-SiC composite. To realize the homogeneous distribution of SiC particles in stir-casting Al-SiC composite, semisolid stir casting of Al-4.25vol.%SiC composite was conducted using a special electromagneticmechanical stirring equipment made by our team, in which there are three uniformly-distributed blades with a horizontal tilt angle of 25 ° to mechanically raise the SiC particles by creating an upward movement of slurry under electromagnetic stirring. The microstructure of the as-cast Al-SiC composites was observed by Scanning Electron Mcroscopy (SEM). The volume fraction of SiC particles was measured by image analysis using the Quantimet 520 Image Processing and Analysis System. The tensile strength of the Al-4.25vol.%SiC composites was measured by tensile testing. Results show that the Al-4.25vol.%SiC composites with the homogeneous distrbutin of SiC particles can be obtained by the electromagnetic-mechanical stirring casting with the speed of 300 and 600 r·min−1 at 620 °C. The differences between the volume fraction of SiC particles at the top of ingot and that at the bottom are both ~0.04vol.% with the stirring speed of 300 and 600 r·min−1, which are so small that the distribution of SiC particles can be seen as the homogeneous. The tensile strength of the Al matrix is enhanced by 51.2% due to the uniformly distributed SiC particles. The porosity of the composite mainly results from the solidifi cation shrinkage of slurry and it is less than 0.04vol.%.
topic Al-SiC composite
stir casting
particle distribution
microstructure
url http://ff.foundryworld.com/uploadfile/2018092031440415.pdf
work_keys_str_mv AT yunhuidu distributionofsicparticlesinsemisolidelectromagneticmechanicalstircastingalsiccomposite
AT pengzhang distributionofsicparticlesinsemisolidelectromagneticmechanicalstircastingalsiccomposite
AT weiyizhang distributionofsicparticlesinsemisolidelectromagneticmechanicalstircastingalsiccomposite
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