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HOME > J Korean Powder Metall Inst > Volume 16(5); 2009 > Article
가스분무법에 의한 Fe계 비정질 분말의 제조와 볼밀링공정에 의한 연질 Cu분말과의 복합화 및 SPS 거동 (II) - II. 복합분말의 SPS와 특성 -
김진천, 김지순, 김휘준, 김정곤
Production of Fe Amorphous Powders by Gas-Atomization Process and Subsequent Spark Plasma Sintering of Fe amorphous-ductile Cu Composite Powder Produced by Ball-milling Process (II) - II. SPS Behaviors of Composite Powders and their Characteristics -
Jin-Chun Kim, Ji-Soon Kim, H.J. Kim, Jeong-Gon Kim
Journal of Korean Powder Metallurgy Institute 2009;16(5):326-335
DOI: https://doi.org/10.4150/KPMI.2009.16.5.326
1울산대학교 첨단소재공학부
2울산대학교 첨단소재공학부
3한국생산기술연구원 에코공정연구부
4인천시립대 화상이미지
1School of Materials Science & Engineering, University of Ulsan
2School of Materials Science & Engineering, University of Ulsan
3Eco Functional Materials Team, Korea Institute of Industrial Technology
4Image Printing, Incheon City College
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Fe based (Fe_68.2C_5.9Si_3.5B_6.7P_9.6Cr_2.1Mo_2.0Al_2.0) amorphous powder, which is a composition of iron blast cast slag, were produced by a gas atomization process, and sequently mixed with ductile Cu powder by a mechanical ball milling process. The Fe-based amorphous powders and the Fe-Cu composite powders were compacted by a spark plasma sintering (SPS) process. Densification of the Fe amorphous-Cu composited powders by spark plasma sintering of was occurred through a plastic deformation of the each amorphous powder and Cu phase. The SPS samples milled by AGO-2 under 500 rpm had the best homogeneity of Cu phase and showed the smallest Cu pool size. Micro-Vickers hardness of the as-SPSed specimens was changed with the milling processes.

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