• Title/Summary/Keyword: WC carbides

Search Result 63, Processing Time 0.016 seconds

Change of Surface Characterisstics of Cemented Carbide by Nitriding (초경합금의 플라즈마 질화처리에 의한 표면물성 변화)

  • 김기호
    • Journal of the Korean institute of surface engineering
    • /
    • v.30 no.3
    • /
    • pp.167-174
    • /
    • 1997
  • WC-C0 base cemented carbides were plasma nitrided to obtain more hadened surface layer. The surface hardness of Hv1338 which is higher than a non-treated ane by 30%, and the hardened layer thickness of about 50$\mu\textrm{m}$ were obtained by the treatment of 3hrs under the conditions of $550^{\circ}C$, and 5torr of gas pressure of which composition was 1:1 of $N_2:H_2$. The nitrided surfaces has WIN and W2N phases in the non-coated samples and AIN phase in the alumina coated sampled as the results of X-ray results, and showed surface roughnness of 5$\mu\textrm{m}$ which were caused by the sputtering action of the plasma gasee. The hardenened layer exihibits an enhanced wear resistance the cuttability test.

  • PDF

초경합금재의 절삭에 관한 연구 -선반절삭에 있어서 공구의 마멸과 절삭저항-

  • 허성중
    • Proceedings of the Korean Society of Precision Engineering Conference
    • /
    • 2004.05a
    • /
    • pp.248-248
    • /
    • 2004
  • 초경합금재 (cemented carbides)는 WC(텅스텐 카바이드, 탄화텅스텐)과 Co(코발트)를 주성분으로 한 복합재료로서 저온경도와 고온경도가 뛰어 나며, 압축강도와 강성이 높은 것 등, 제반 물리적 성질이 안정되어 있다 이와 같은 우수한 특징을 이용하여, 초경합금재는 다양한 분야에 이용되고 있는데, 크게 나누어 절삭 공구용으로 뿐만 아니라 IT 관련, 환경 관련 산업용, 광산용 공구, 건설 공구, 철강의 압연 롤러 등의 내마멸, 내충격용 재료에도 많이 사용된다. 이들 가운데, 내마멸, 내충격용으로 사용되는 것은 절삭 공구용 초경합금재에 비해 결합제인 코발트를 많이 함유하며 경질 성분의 텅스텐 카바이드의 입자 지름도 거칠고 크다.(중략)

  • PDF

Abrasion Wear Behavior of Recycled Tungsten Carbide Reinforced Metal Matrix Composite (재생 초경합금 분말을 활용한 금속기지 복합재료의 Abrasion 마모거동)

  • Kang, Nam-Hyun;Chae, Hyun-Byung;Kim, Jun-Ki;Choi, Jong-Ha;Kim, Jeong-Han
    • Korean Journal of Materials Research
    • /
    • v.13 no.12
    • /
    • pp.850-854
    • /
    • 2003
  • The abrasion wear behavior on the hardfacing weld was investigated by performing abrasion wear, hardness, and microstructural tests. The gas metal arc(GMA) weld was produced by using the cored wire which was filled with the hard metal, i.e., the recycled tungsten carbide (WC) reinforced metal matrix composite. For 30% addition of the hard metal, the abrasion wear resistance was significantly improved comparing with that for 20% addition of the hard metal. Above 30% addition of the hard metal, however, there was no significant improvement of the wear resistance. The improvement of the wear resistance was due to the increased amount of eutectic carbides(W$_{6}$C) which was formed during GMA welding. For the weld in which the hard metal was added to 30-40%, an optimum level of abrasion wear resistance was performed.