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Development of Forged Piston for Weight-Reduction

경량 단조 피스톤 기술 개발

  • Hong, Eunji (Light Metal Materials Research Team, Hyundai Motor Group) ;
  • Kang, Heesam (Light Metal Materials Research Team, Hyundai Motor Group)
  • 홍은지 (현대자동차 경금속재료연구팀) ;
  • 강희삼 (현대자동차 경금속재료연구팀)
  • Received : 2016.09.13
  • Accepted : 2016.12.12
  • Published : 2017.01.01

Abstract

This forged piston is proposed with a lighter weight and higher durability than a gravity casting piston for gasoline engines. However, a forged piston is very difficult to develop and mass-produce due to lack of basic technologies such as design, material and forging technique. First, we benchmarked existing forged pistons according to database design parameters. Second, we evaluated two solidification processes, continuous casting and spray forming, to produce heat-resistant alloy billets for forging. The spray forming process gives better mechanical properties at all temperatures, particularly at elevated temperatures except when poor formability is present. We used DEFORM simulation to determine the optimum process condition with billet from spray forming and successfully commercialized it with LF Sonata HEV.

Keywords

References

  1. Mielke, Steffens, Beer and Henning, "New Aluminum Piston Alloy with Increased Fatigue Strength at High Temperatures," SAE 980647, pp.1-7, 1998.
  2. S. J. Barnes and K. Lades, "The Evolution of Aluminium Based Piston Alloys for Direct Injection Diesel Engines," SAE 2002-01-0493, pp.1-9, 2002.
  3. S. Reichstein, R. Weiss, S. Kenningley, K. Lades, P. Konrad and F. Doernenburg, "High-Performance Cast Aluminum Pistons for Highly Efficient Diesel Engines," SAE 2007-01-1438, pp.1-10, 2007.
  4. J. H. Kim, S. W. Lee, Y. S. Cho, K. C. Lim and Y. S. Yoo, "An Experimental Study on the Performance and Emission Characteristics with a Light Weight Piston in SI Engine," KSAE Spring Conference Proceedings, pp.17-22, 2010.
  5. A. Tanihata, N. Sato, K. Katsumata and T. Shiraishi, "Development of High-strength Piston Material with High Pressure Die Casting," SAE 2006-01-0986, pp.1-11, 2006.
  6. H. Fujii and T. Oka, "Development of Light-weight Forged Piston Material by Optimizing Size of Needle-type Intermetallic Compound," SAE 2008-01-1047, pp.1-11, 2008.