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급속응고법으로 제조한 과공정 Al-17Si-5Fe 합금 압출재의 미세조직 및 기계적 특성Mechanical Characteristics and Microstructures of Hypereutectic Al-17Si-5Fe Extruded Alloys Prepared by Rapid Solidification Process

Other Titles
Mechanical Characteristics and Microstructures of Hypereutectic Al-17Si-5Fe Extruded Alloys Prepared by Rapid Solidification Process
Authors
김태준김덕현이세동백아름임수근
Issue Date
Apr-2019
Publisher
한국주조공학회
Keywords
Rapid Solidification process; Hypereutectic Al alloy; Hot- extruded; Amorphous; Microstructure
Citation
한국주조공학회지, v.39, no.2, pp 26 - 31
Pages
6
Indexed
KCI
Journal Title
한국주조공학회지
Volume
39
Number
2
Start Page
26
End Page
31
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/74384
DOI
10.7777/jkfs.2019.39.2.26
ISSN
1598-706X
2288-8381
Abstract
In this study, the mechanical characteristics and microstructure of hypereutectic Al-17Si-5Fe extruded alloys prepared by a rapid solidification process (RSP) were investigated. The hypereutectic Al alloy was fabricated by means of RSP and permanent casting. For RSP, the Al alloy melted at 920oC, cooling the specimens at a rate of 106oC/s when the RSP was used, thus allowing the refining of primary Si particles more than when using permanent casting, at a rate of about 91%. We tested an extrusion RSP billet and a permanent-cast billet. Before the hot-extrusion process, heating to 450oC took place for one hour. The samples were then hotextruded with a condition of extrusion ratio of 27 and a ram speed of 0.5 mm/s. Microstructural analyses of the extruded RSP method and the permanent casting method were carried out with OM and SEM-EDS mapping. The mechanical properties in both cases were evaluated by Vickers micro-hardness, wear resistance and tensile tests. It was found that when hypereutectic Al-17Si-5Fe alloys were fabricated by a rapid solidification method, it becomes possible to refine Si and intermetallic compounds. During the preparation of the hypereutectic Al-17Si-5Fe alloy by the rapid solidification method, the pressure of the melting crucible was low, and at faster drum speeds, smaller grain alloy flakes could be produced. Hot extrusion of the hypereutectic Al-17Si-5Fe alloy during the rapid solidification method required higher pressure levels than hot extrusion of the permanent mold-casted alloy. However, it was possible to produce an extruded material with a better surface than that of the hot extruded material processed by permanent mold casting.
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공과대학 (나노신소재공학부금속재료공학전공)
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