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HOME > J Korean Powder Metall Inst > Volume 20(5); 2013 > Article
Hydroxyapatite가 도핑된 Ti-6Al-4V 구형 분말의 전기방전 소결 및 소결체 특성에 관한 연구
조유정, 김영훈, 조예현, 김민재, 김현수, 김승우, 박정환, 이원희
A Study of Electro-Discharge-Sintering of Ti-6Al-4V Spherical Powders Doped with Hydroxyapatite by Spex Milling and Its Consolidation Characteristics
Y.J. Cho, Y.H. Kim, Y.H. Jo, M.J. Kim, H.S. Kim, S.W. Kim, J.H. Park, W.H. Lee
Journal of Korean Powder Metallurgy Institute 2013;20(5):376-381
DOI: https://doi.org/10.4150/KPMI.2013.20.5.376
1세종대학교 나노신소재공학부
2원광보건대학교 치기공과
3세종대학교 나노신소재공학부
4세종대학교 나노신소재공학부
5경기과학고등학교
6경기과학고등학교
7경기과학고등학교
8세종대학교 나노신소재공학부
1Division of Nano and Advanced Materials Engineering, Sejong University
2Department of Dental Laboratory Technology, Wonkwang Health Science University
3Division of Nano and Advanced Materials Engineering, Sejong University
4Division of Nano and Advanced Materials Engineering, Sejong University
5Gyeonggi Science High School for the Gifted
6Gyeonggi Science High School for the Gifted
7Gyeonggi Science High School for the Gifted
8Division of Nano and Advanced Materials Engineering, Sejong University
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Spherical Ti-6Al-4V powders in the size range of 250 and 300 µm were uniformly doped with nano-sized hydroxyapatite (HAp) powders by Spex milling process. A single pulse of 0.75-2.0 kJ/0.7 g of the Ti-6Al-4V powders doped with HAp from 300 mF capacitor was applied to produce fully porous and porous-surfaced Ti-6Al-4V implant compact by electro-discharge-sintering (EDS). The solid core was automatically formed in the center of the compact after discharge and porous layer consisted of particles connected in three dimensions by necks. The solid core increased with an increase in input energy. The compressive yield strength was in a range of 41 to 215 MPa and significantly depended on input energy. X-ray photoelectron spectroscopy and energy dispersive x-ray spectrometer were used to investigate the surface characteristics of the Ti-6Al-4V compact. Ti and O were the main constituents, with smaller amount of Ca and P. It was thus concluded that the porous-surfaced Ti-6Al-4V implant compacts doped with HAp can be efficiently produced by manipulating the milling and electro-discharge-sintering processes.

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