The Effect of Current on Characteristics of Stellite 12 Alloy Overlayer by PTA Process

PTA법에 의한 스텔라이트 12 합금 육성층의 특성에 미치는 전류의 영향

  • 정병호 (부경대학교 재료공학부) ;
  • 김무길 (부경대학교 재료공학부) ;
  • 안용식 (부경대학교 재료공학부) ;
  • 김민영 (부경대학교 재료공학부) ;
  • 이성열 (한국해양대학교 기계소재공학부)
  • Published : 2001.08.31

Abstract

Stellite 12 alloy-powders were overlaid on 410 stainless steel valve seat using plasma transferred arc(PTA) process. Variation of the microstructure, hardness, wear and corrosion of overlaid deposit with current change was investigated. The deposit showed hypoeutectic microstructure, which was consisted of primary cobalt dendrite and networked $M_7C_3$ type eutectic carbides. As current increased, the amount of eutectic carbide decreased and its dendritic secondary arm spacing increased. Hardness of the deposit was decreased with increase of current. Stress relief heat treatment at $600^{\circ}C$ for two hours resulted in slight increase of hardness in the deposit and showed uniform hardness distribution in base metal without any hardened layer in HAZ. Specific wear decreased with increase of sliding distance. The deposit of high hardness with a lot of eutectic carbide showed relatively low specific wear. Initial corrosion current density of the deposit in 0.1N sulfuric acid was lower than those of 410 stainless steel, and showed a little variation with PTA current.

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