A Forging Analysis and Mechanical Properties Evaluation of Superalloy Exhaust Valve Spindle

초내열 합금 배기 밸브 스핀들 단조 해석 및 기계적 특성 평가

  • 최성규 (케이에스피 기술연구소) ;
  • 오중석 (현대중공업 엔진기계사업본부) ;
  • 정호승 (부산대학교 롤스로이스 대학기술센터) ;
  • 조종래 (한국해양대학교 기계정보공학부)
  • Published : 2009.10.08

Abstract

The nickel-based alloy Nimonic 80A possesses strength, and corrosion, creep and oxidation resistance at high temperature. The exhaust valves of low speed diesel engines are usually operated at temperature levels of 400-$600^{\circ}C$ and high pressure to enhance thermal efficiency and exposed to the corrosion atmosphere by the exhaust gas. Also, the exhaust valve is subjected to repeated thermal and mechanical loads. So, the nickel-based alloy Nimonic 80A was used for the large exhaust valve spindle. It is composed a 540mm diameter head and a 125mm diameter stem. It is developed large products by hot closed-die forging. Manufacturing process analysis of the large exhaust valve spindle was simulated by closed die forging with hydraulic press and cooled in air after forging. The preform was heated to $1080^{\circ}C$ Numerical calculation was performed by DEFORM-2D, a commercial finite element code. Heat transfer can be coupled with the deformation analysis in a non-isothermal deformation analysis. Mechanical properties of the large exhaust valve spindle were evaluated by the variety of tests, including microstructure observation, tensile, as well as hardness and fatigue tests, were conducted to evaluate the mechanical properties for head part of exhaust valve spindle.

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