Effect of mechanical milling parameters on the properties of electrolytic pure copper powders and hot pressed billets fabricated from recycled copper wastes
Creators
- 1. Karadeniz Tech Univ, Dept Met & Mat Engn, TR-61080 Trabzon, Turkiye
- 2. Gumushane Univ, Dept Mech Engn, Gumushane, Turkiye
- 3. Tech Univ Chemnitz, Inst Mat Sci & Engn IWW, Professorship Composites & Mat Cpds, D-09125 Chemnitz, Germany
- 4. Cracow Univ Technol, Fac Mat Sci & Phys, Warszawska 24, PL-31155 Krakow, Poland
Description
This study was conducted to comprehensively investigate the effect of mechanical milling parameters on the properties of electrolytic pure copper powders and hot pressed billets fabricated from recycled copper wastes. Three different milling speeds, five different milling times and three different ball to powder weight ratios were used to fully reveal the effect of the mechanical milling process on the properties of recovered Cu powders. The results show that as the milling time and milling speed increased, the initial dendritic morphology of the copper was transformed into a flake-like structure. At 400 rpm and a 5:1 BPR parameters, the average particle sizes of C3, C4, and C5 after 2, 4, and 8h were similar to 52 mu m, 83 mu m, and 71 mu m, respectively. This suggests that particle size initially increases due to shape change and cold-welding, but at longer durations, fracture becomes dominant. The I5 with d(0.5) = 69.32 mu m exhibited a high flow rate of 5.88 g/s with an apparent density of 2.9 g/cm(3).While the hardness value of the Cu samples (A1-bulk sample) produced by exposure to the lowest deformation during the mechanical milling is 95.02 HB, the hardness value of the Cu specimens (F5-bulk sample) showing the highest apparent density, best flow rate and highest density values is 109.31 HB. The electrical conductivity values were determined to be approximately 52.2 MS/m, 57.4 MS/m and 44.3 MS/m for A1-bulk, F5-bulk and H5-bulk, respectively. This study offers valuable insights into the relationship between milling parameters, powder characteristics, and final material properties.
Files
bib-77cbd239-f53e-43ef-b1f9-ba888b0e56ad.txt
Files
(388 Bytes)
| Name | Size | Download all |
|---|---|---|
|
md5:f46125b0fd261f97ce070e29d7395366
|
388 Bytes | Preview Download |