Browse > Article
http://dx.doi.org/10.3740/MRSK.2004.14.11.795

Fabrication of Injection Molded Fe Sintered Bodies Using Nano Fe Powder  

Kim Ki-Hyun (Division of Advanced Materials Engineering, Kongju National University)
Lim Jae-Hyun (Dept. of Materials Engineering, Chungnam University)
Choi Chul-Jin (Korea Institute of Machinery and Materials)
Lee Byong-Taek (Division of Advanced Materials Engineering, Kongju National University)
Publication Information
Korean Journal of Materials Research / v.14, no.11, 2004 , pp. 795-801 More about this Journal
Abstract
The injection molded Fe sintered bodies were fabricated using two kinds of Fe powders haying 50 nm and $3\sim5{\mu}m$ in diameter. In the using of Fe powder having 50 nm in diameter, the comparatively dense bodies ($94\sim97\%$) were obtained even at low sintering temperature ($600\sim700^{\circ}C$), while in the sintered bodies ($1000^{\circ}C$) using $3\sim5{\mu}m$ Fe powder, their relative densities showed low values about $93\%$, although they were strongly depend on the sintering temperature and volume ratio of Fe powder and binder. In the sintered bodies using of 50 nm Fe powders, the volume shrinkage and grain size increased as the sintering temperature increased, but the values of hardness decreased. In the sample sintered at $650^{\circ}C$, the values of relative density, volume shrinkage and grain size were $96\%,\;37\%\;and\;0.97{\mu}n$, respectively and the minimum value of wear depth was obtained due to combination of fine grain and comparatively high density.
Keywords
Fe nano powder; injection molding process;
Citations & Related Records
Times Cited By KSCI : 2  (Citation Analysis)
연도 인용수 순위
1 C. J. Chio and X. L. Dong, J. Kor. Powder Metall. Inst., 11, 16 (2004)   DOI   ScienceOn
2 Leader F. Pease III, Intern. J. P/M., 22, 177 (1986)
3 L. Castro, S. Merino, B. Levenfeld, A. Varez and J. M. Torralba, J. Mate. Proc. Tech., 143, 397 (2003)   DOI   ScienceOn
4 A. R. Erickson and R. E. Wiech Jr, Metals Handbook (2nd ed.) ASM Met. Park, Ohio., 7, 495 (1986)
5 N. H. Loh, S. B. Tor and K. A. Khor, J. Mate. Proc. Tech., 108, 389 (2001)   DOI   ScienceOn
6 M. Dutlly, O. Ghouati and J. C. Gelin, J. Mate. Proc. Tech., 83, 170 (1998)   DOI   ScienceOn
7 A. S. Edelstein and R. C. Cammarata, Nanomaterials Synthesis, Properties and Application, Institute of Physics Publishing, London., 15, (1996)
8 G. Fu, N. H. Loh, S. B. Tor and Y. Murakoshi, R. Maeda, Mater. Design., 729 (2004)
9 Benzler T, Piotter V, Ruprecht R and Hausselt J, Proceedings of the Powder Metallurgy World Congress and Exhibition., 3, 9 (1998)
10 C. H. Chio and B. K. Kim, J. Kor. Inst. Met. & Mater., 40, 711 (2002)
11 Y. Chen, N. Glumac, B. H. Kear and G. Skandan, Nano-structured Mater., 9, 101 (1997)   DOI   ScienceOn
12 Z. H. Wang, C. J. Choi, B. K. Kim and Z. D. Zhang, Mater. Lett., 573, 560 (2003)   DOI   ScienceOn