The Variation of TiAl microstructure with Ni, Mn alloying and Heat Treatment

Ni, Mn 첨가와 열처리에 따른 TiAl 미세 조직 변화

  • Moon, J.T. (Department of Metallurgical, & Materials Science, Hong Ik University) ;
  • Lee, S.H. (Department of Metallurgical, & Materials Science, Hong Ik University) ;
  • Han, B.S. (Department of Metallurgical, & Materials Science, Dae Jon National Univ. of Technology) ;
  • Shin, B.M. (Department of Metallurgical, & Materials Science, Dae Jon National Univ. of Technology) ;
  • Lee, Y.H. (Department of Metallurgical, & Materials Science, Hong Ik University)
  • 문종태 (홍익 대학교 금속.재료 공학과) ;
  • 이승헌 (홍익 대학교 금속.재료 공학과) ;
  • 한복수 (대전 산업 대학교 금속 공학과) ;
  • 신봉문 (대전 산업 대학교 금속 공학과) ;
  • 이용호 (홍익 대학교 금속.재료 공학과)
  • Published : 1997.09.30

Abstract

TiAl intermetallic compound was candidated for the application to the high temperature materials such as a gas turbine exhaust valve in the automobile. However, this material dose not have ductility allowing to machinability to product. To improve the ductility, many researches conduct alloy design and heat treatment methods. We observed that the microstructure of TiAl varied with Ni, Mn elements as well as a heat treatment condition. In the case of Ni element addition, the TiAlNi intermetallic compound was precipitated at the grain boundary. When the heat treatment temperature increased from $1000^{\circ}C$ to $1300^{\circ}C$, the TiAlNi intermetallic compound was uniformly dispersed on the matrix. In the case of Mn element addition, the mixed duplex structure of ${\gamma}$-TiAl and lamellar(TiAl/$Ti_3Al$) was obtained with $1250^{\circ}C$ and $1300^{\circ}C$ heat treatment for 1 hour. When the heat treatment temperature increased from $1250^{\circ}C$ to $1300^{\circ}C$, the lamellar domain of the duplex structure was transformed near-lamellar structure.

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Acknowledgement

Supported by : 대전산업 대학교