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초고속 회전체의 내구성향상을 위한 Co-alloy(T800)의 초고속 용사코팅
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  • 초고속 회전체의 내구성향상을 위한 Co-alloy(T800)의 초고속 용사코팅
저자명
조동율,윤재홍,김길수,윤석조,백남기,박병철,천희곤,Cho. Tong-Yul,Yoon. Jae-Hong,Kim. Kil-Su,Youn. Suk-Jo,Back. Nam-Ki,Park. Byung-Chul,Chun. Hui-Gon
간행물명
한국공작기계학회논문집
권/호정보
2006년|15권 6호|pp.32-37 (6 pages)
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한국공작기계학회
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

Micron size Co-alloy(T800) powder was coated on Inconel 718 by HVOF thermal spraying for the studies of the improvement of durability of high speed spindle by using Taguchi program for the parameters of spray distance, flow rates of hydrogen and oxygen and powder feed rate. The optimal coating process was determined by the studies of coating properties such as micro-structure, porosity, surface roughness and micro hardness. Friction and wear behaviors of coatings were investigated by sliding wear test at room temperature and $1000^{circ}F(538^{circ}C)$. At both room temperature and $538^{circ}C$ the sliding wear debris and friction coefficients of the coating were drastically reduced compared with the surface of non-coated parent material. This shows that Co-alloy powder coating is highly recommendable for the durability improvement surface coating of high speed air-bearing spindle. At high temperature wear traces and friction coefficients of both coating and non-coating were drastically reduced compared with those of room temperature since the brittle oxides were formed easily on the surface, and the brittle oxide phases were attrited by the reciprocating sliding wear according to the complicated mixed wear mechanisms These oxide particles, partially melts and the melts play role as lubricant and reduce the wear and friction coefficient. This also shows that Co-alloy powder coating is highly recommendable far the durability improvement surface coating on the surface vulnerable to frictional heat such as high speed spindles.