디젤엔진 배기밸브와 시트 인서트의 밸브 재질에 따른 마모 및 매칭성 연구

A Study of wear and Matching of Diesel Engine Exhaust Valve and Seat Insert Depending on Valve Materials

  • 김양수 (한국생산기술연구원 실버기술개발단) ;
  • 전경진 (한국생산기술연구원 실버기술개발단) ;
  • 홍재수 (한국생산기술연구원 실버기술개발단) ;
  • 정동택 (한국기술교육대학교 메카트로닉스공학부)
  • 발행 : 2008.06.01

초록

The wear on engine valve and seat insert is one of the most important factors affecting engine performance. The engine valve and seat insert must be able to withstand the severe environment that is created by: high temperature exhaust gases generated while the engine is running, rapid movement of the valve spring, high pressure generated in the explosive process. In order to study such problems, a simulator has been developed to generate and control high temperatures and various speeds during motion. The wear simulator is considered to be a valid simulation of the engine valve and seat insert wear process with various speeds during engine activity. This work focused on the test of various degrees of wear on four different exhaust valve materials such as HRV40, HRV40-FNV (face nitrided valve), STL #32, STL #6,. Throughout all tests performed in this study, the outer surface temperature of the seat insert was controlled at $350^{\circ}C$, the cycle number was $4.0{\times}10^6$, the test load was 6860 N, the fuel was LPG the test speed was 20 Hz (2400 RPM) and the seat insert material was HVS1-2. The mean (standard deviation) maximum roughness of the exhaust valve and seat insert was $25.44\;(3.16)\;{\mu}m$ and $27.53\;(3.60)\;{\mu}m$ at the HRV40, $21.58\;(2.38)\;{\mu}m$ and $25.94\;(3.07)\;{\mu}m$ at the HRV40-FNV, $36.73\;(8.98)\;{\mu}m$ and $61.38\;(7.84)\;{\mu}m$ at the STL #32, $73.64\;(23.80)\;{\mu}m$ and $60.80\;(13.49)\;{\mu}m$ at the STL #6, respectively. It was discovered that the maximum roughness of exhaust valve was lower as the high temperature hardness of the valve material was higher under the same test conditions such as temperature, test speed, cycle number, test load and seat insert material. The set of the HRV40-FNV exhaust valve and the HVS1-2 seat insert showed the best wear resistance.

키워드

참고문헌

  1. Kim, E. S., Cho, J. H., Park, K. S., Jung, T. Y. and Im, B. S., "Automobile Technology Handbook," The Korean Society of Automobile Engineers, No. 1, pp. 4-25, 1996
  2. Son, S. M. and Park, K. S., "The Effects an Abnomal Adjusting Intake and Exhaust Valves on the Combustion Characteristics of SI Engine," Journal of the Korean Society of Precision Engineering, Vol. 22, No. 3, pp. 123-129, 2005
  3. Chun, K. J., Hong, J. S., Kim, J. H., Hyung, S. J. and Shin, C. S., "Comparison of Wears in the Engine Valve and Seat Insert Depending on Valve Materials," The 13th International Pacific Conference on Automotive Engineering, Vol. 26, pp. 206-211, 2005
  4. Lewis, R., Dwyer-Joyce, R. S. and Josey, G., "Investigation of Wear Mechanisms Occurring in Passenger Car Diesel Engine Inlet Valves and Sear Inserts," SAE Paper No. 1999-01-1216, 1999
  5. Chun, K. J., Hong, J. S. and Lee, H. J., "A Study on Engine Valve and Seat Insert Wearing Depending on Speed Change," SAE Technical Paper No. 2004-01-1655, 2004
  6. Malatesta, M. J., Barber, G. C., Larson, J. M. and Narasimhan, S. L., "Development of a Laboratory Bench Test to Simulate Seat Wear of Engine Poppet Valves," Tribology Transactions, Vol. 36, No. 44, pp. 627-632, 1993 https://doi.org/10.1080/10402009308983204
  7. Pyle, W. R. and Smrcka, N. R., "The Effect of Lubricating Oil Additives on Valve Recession in Stationary Gaseous-Fueled Four-Cycle Engine," SAE Technical Paper Series No. 932780, 1993
  8. Yang, L. C., Hamada, A. and Ohtsubo, K., "Engine Valve Temperature Simulation System," SAE Technical Paper No. 2000-01-0564, 2000
  9. Zhao, R., Barber, G. C., Wang, Y. S. and Larson, J. E., "Wear Mechanism Analysis of Engine Exhaust Valve Seats with a Laboratory Simulator," Tribology Transactions, Vol. 40, No. 22, pp. 209-218, 1997 https://doi.org/10.1080/10402009708983647
  10. Lewis, R., Dwyer-Joyce, R. S. and Josey, G., "Design and Development of a Bench Test-Rig for Investigation Diesel Engine Inlet Valve and Seat Inset Wear," Proceedings of the 5th International Tribology Conference, Institution of Engineers, pp. 365-370, 1998
  11. Chun, K. J. and Hong, J. S., "A Study on Wear of Engine Valve and Seat Insert Depending on Speed Change," The Korean Society of Automobile Engineers, Vol. 11, No. 6, pp. 14-20, 2003
  12. Giles, W., "Valve Problems with Lead Free Gasoline," SAE Technical Paper No. 710368, 1971
  13. Kimihiko, A., Akira, M. and Akio, Y., "Hardfaced Valve and P/M Valve Seat System for CNG and LPG Fuel Engines," SAE Technical Paper No. 2005-01-0718, 2005
  14. Godfrey, D. and Courtney, R. L., "Investigation of the Mechanism of Exhaust Valve Seat Wear in Engines Run on Unleaded Gasoline," SAE Technical Paper No. 710356, 1971