Microstructure of Semi-Solid Billets Produced by Electromagnetic Stirring and Behavior of Primary Particles during the Indirect Forming Process

An A356 alloy semi-solid billet was fabricated using electromagnetic stirring. After inserting the semi-solid billet into an indirect die, a thin plate of 1.2 mm thickness was fabricated by applying compression. The microstructure of the semi-solid billets fabricated in various stirring conditions (...

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Main Author: Chul Kyu Jin
Format: Article
Language:English
Published: MDPI AG 2018-04-01
Series:Metals
Subjects:
Online Access:http://www.mdpi.com/2075-4701/8/4/271
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spelling doaj-0a888841aa5342bf8e4167e68750c1fd2020-11-24T23:26:42ZengMDPI AGMetals2075-47012018-04-018427110.3390/met8040271met8040271Microstructure of Semi-Solid Billets Produced by Electromagnetic Stirring and Behavior of Primary Particles during the Indirect Forming ProcessChul Kyu Jin0School of mechanical engineering, Kyungnam University, 7 Kyungnamdaehak-ro, Masanhappo-gu, Gyeongsangnam-do, Changwon-si 51767, KoreaAn A356 alloy semi-solid billet was fabricated using electromagnetic stirring. After inserting the semi-solid billet into an indirect die, a thin plate of 1.2 mm thickness was fabricated by applying compression. The microstructure of the semi-solid billets fabricated in various stirring conditions (solid fraction and stirring force) were analyzed. The deformation and behavior of the primary α-Al particles were analyzed for various parameters (solid fraction, die friction, compression rate, and compression pressure). In the stirred billets, a globular structure was dominant, while a dendrite structure was dominant in the unstirred billets. As the solid fraction decreased and the stirring current increased, the equivalent diameter and roundness of the primary α-Al particles decreased. The primary α-Al particle sizes were reduced as the compressing velocity increased, while a greater number of particles could move as the compressing pressure increased. As the path over which the motion occurred became smoother, the fluidity of the particles improved. Under compression, bonded primary α-Al particles became separated into individual particles again, as the bonds were broken. As wearing caused by friction and collisions between the particles during this motion occurred, the particle sizes were reduced, and the particle shapes become increasingly spheroid.http://www.mdpi.com/2075-4701/8/4/271semi-solid materialA356 alloyelectromagnetic stirringcompressionprimary α-Al particle
collection DOAJ
language English
format Article
sources DOAJ
author Chul Kyu Jin
spellingShingle Chul Kyu Jin
Microstructure of Semi-Solid Billets Produced by Electromagnetic Stirring and Behavior of Primary Particles during the Indirect Forming Process
Metals
semi-solid material
A356 alloy
electromagnetic stirring
compression
primary α-Al particle
author_facet Chul Kyu Jin
author_sort Chul Kyu Jin
title Microstructure of Semi-Solid Billets Produced by Electromagnetic Stirring and Behavior of Primary Particles during the Indirect Forming Process
title_short Microstructure of Semi-Solid Billets Produced by Electromagnetic Stirring and Behavior of Primary Particles during the Indirect Forming Process
title_full Microstructure of Semi-Solid Billets Produced by Electromagnetic Stirring and Behavior of Primary Particles during the Indirect Forming Process
title_fullStr Microstructure of Semi-Solid Billets Produced by Electromagnetic Stirring and Behavior of Primary Particles during the Indirect Forming Process
title_full_unstemmed Microstructure of Semi-Solid Billets Produced by Electromagnetic Stirring and Behavior of Primary Particles during the Indirect Forming Process
title_sort microstructure of semi-solid billets produced by electromagnetic stirring and behavior of primary particles during the indirect forming process
publisher MDPI AG
series Metals
issn 2075-4701
publishDate 2018-04-01
description An A356 alloy semi-solid billet was fabricated using electromagnetic stirring. After inserting the semi-solid billet into an indirect die, a thin plate of 1.2 mm thickness was fabricated by applying compression. The microstructure of the semi-solid billets fabricated in various stirring conditions (solid fraction and stirring force) were analyzed. The deformation and behavior of the primary α-Al particles were analyzed for various parameters (solid fraction, die friction, compression rate, and compression pressure). In the stirred billets, a globular structure was dominant, while a dendrite structure was dominant in the unstirred billets. As the solid fraction decreased and the stirring current increased, the equivalent diameter and roundness of the primary α-Al particles decreased. The primary α-Al particle sizes were reduced as the compressing velocity increased, while a greater number of particles could move as the compressing pressure increased. As the path over which the motion occurred became smoother, the fluidity of the particles improved. Under compression, bonded primary α-Al particles became separated into individual particles again, as the bonds were broken. As wearing caused by friction and collisions between the particles during this motion occurred, the particle sizes were reduced, and the particle shapes become increasingly spheroid.
topic semi-solid material
A356 alloy
electromagnetic stirring
compression
primary α-Al particle
url http://www.mdpi.com/2075-4701/8/4/271
work_keys_str_mv AT chulkyujin microstructureofsemisolidbilletsproducedbyelectromagneticstirringandbehaviorofprimaryparticlesduringtheindirectformingprocess
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