The Microstructures and Properties of Surface Layer on the Tool Steel Formed by Ion Nitriding -Effects of Process Parameter-

마이크로 펄스 플라즈마 질화에 의해 생성된 금형 공구강의 표면층에 관한 연구 -공정 변수의 영향-

  • Lee, J.S. (RRC/ReMM. School of Mat. & Met. Eng., University of Ulsan) ;
  • Kim, H.G. (Dept. of Metall. Eng., Pukyong National University) ;
  • You, Y.Z. (RRC/ReMM. School of Mat. & Met. Eng., University of Ulsan)
  • 이재식 (울산대학교 지역협력연구센터 기계부품 및 소재특성 평가 연구센터/첨단소재공학부) ;
  • 김한군 (부경대학교 공과대학 금속공학과) ;
  • 유용주 (울산대학교 지역협력연구센터 기계부품 및 소재특성 평가 연구센터/첨단소재공학부)
  • Received : 2000.12.15
  • Published : 2001.01.31

Abstract

The effects of gas composition, pressure, temperature and time on the case thickness, hardness and nitride formation in the surface of tool steels(STD11 and STD61) have been studied by micro-pulse plasma nitriding. External compound layer and internal diffusion layer and the diffusion layer were observed in the nitrided case of tool steels. The relative amounts and kind of phases formed in the nitrided case changed with the change of nitriding conditions. Generally, only nitride phases such as ${\gamma}(Fe_4N)$, ${\varepsilon}(Fe_{2-3}N)$, or $Cr_{1.75}V_{0.25}N_2$ phases were detected in the compound layer, while nitride and carbide phases such as ${\varepsilon}-nitride(Fe_{2-3}N)$, $(Cr,Fe)_{\gamma}C_3$ or $Fe_3C$ were detected in the diffusion layer by XRD analysis. The thickness of compound layer increased with the increase of nitrogen content in the gas composition. Maximum case depth was obtained at gas pressure of 200Pa.

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Acknowledgement

Supported by : 울산대학교