- Fabrication of Silver Flake Powder by the Mechanical Milling Process
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Hae-Young Jeong, Gil-Geun Lee
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J Korean Powder Metall Inst. 2016;23(1):54-60. Published online February 1, 2016
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DOI: https://doi.org/10.4150/KPMI.2016.23.1.54
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This study focuses on fabricating silver flake powder by a mechanical milling process and investigating the formation of flake-shaped particles during milling. The silver flake powder is fabricated by varying the mechanical milling parameters such as the amount of powder, ball size, impeller rotation speed, and milling time of the attrition ballmill. The particle size of the silver flake powder decreases with increasing amount of powder; however, it increases with increasing impeller rotation speed. The change in the particle size of the silver flake powder is analyzed based on elastic collision between the balls, taking energy loss of the balls due to the powder into consideration. The change in the particle size of the silver flake powder with mechanical milling parameters is consistent with the change in the diameter of the elastic deformation contact area of the ball, due to the collision between the balls, with milling parameters. The flake-shaped silver particles are formed at the elastic deformation contact area of the ball due to the collision.
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- Fabrication of WC/Co composite powder from oxide of WC/Co hardmetal scrap by carbothermal reduction process
Gil-Geun Lee, Young Soo Lim journal of Korean Powder Metallurgy Institute.2018; 25(3): 240. CrossRef
- Effect of Mechanical Milling Parameters on the Particle Size of Silver Flake
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Gil-Geun Lee, Hae-Young Jeong
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J Korean Powder Metall Inst. 2014;21(4):307-312. Published online August 1, 2014
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DOI: https://doi.org/10.4150/KPMI.2014.21.4.307
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186
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Abstract
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This study is focused on investigating the relation between the particle size of silver flake powder and mechanical milling parameters. Mechanical milling parameters such as ball size, impeller rotation speed and milling time of the attrition ball-mill were controlled to produce silver flake powder. The particle size of the silver flake powder increased with increasing ball size and impeller rotation speed. The change of the particle size of the silver flake powder with mechanical milling parameters was analyzed based on balls motion in the mill container of the attrition ballmill. The silver flake particles were formed at the elastic deformation area of the ball due to the collision between balls. The change of the particle size of the silver flake powder with mechanical milling parameters well consists with the change of the collision energy of ball with parameters mentioned above.
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Citations
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- Fabrication of Silver Flake Powder by the Mechanical Milling Process
Hae-Young Jeong, Gil-Geun Lee Journal of Korean Powder Metallurgy Institute.2016; 23(1): 54. CrossRef
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