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http://dx.doi.org/10.4150/KPMI.2012.19.3.226

Fabrication of Fe coated Mg Based Desulfurization Powder by Mechanical Alloying Process  

Song, Joon-Woo (Division of Advanced Materials Engineering & Institute for Rare Metals, Kongju National University)
Guillermo, Otaduy (Division of Advanced Materials Engineering & Institute for Rare Metals, Kongju National University)
Chun, Byong-Sun (Department of nanomaterials engineering, Chungnam National University)
Hong, Soon-Jik (Division of Advanced Materials Engineering & Institute for Rare Metals, Kongju National University)
Publication Information
Journal of Powder Materials / v.19, no.3, 2012 , pp. 226-231 More about this Journal
Abstract
In this research, the coating behavior of Mg and Fe desulfurization powder fabricated by low energy and conventional planetary mill equipment was investigated as a function of milling time, which produces uniform Fe coated powders due to milling energy. Since high energy ball milling results in breaking the Fe coated Mg powders into coarse particles, low energy ball milling was considered appropriate for this study, and can be implemented in desulfurization industry widely. XRD and FE-SEM analyses were carried out to investigate the microstructure and distribution of the coating material. The thickness of the Fe coating layer reaches a maximum of 14 ${\mu}m$ at 20 milling hours. The BCC structures of Fe particles are deformed due to the slip system of Fe coated Mg particles.
Keywords
Planetary milling; Mg; Fe; Desulfurization;
Citations & Related Records
Times Cited By KSCI : 4  (Citation Analysis)
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