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Improvement of Oil Seal Geometry to Improve Durability of Lateral Damper of Electric Multiple Unit

전동차 횡댐퍼 내구성 향상을 위한 오일씰 형상 개선

  • Kim, Yong Wook (Department of Rolling Stock System, Graduate School of Railroad, Seoul National University of Science and Technology) ;
  • Koo, Jeong Seo (Department of Railway Safety Engineering, Graduate School of Railroad, Seoul National University of Science and Technology)
  • 김용욱 (서울과학기술대학교 철도전문대학원 철도차량시스템공학과) ;
  • 구정서 (서울과학기술대학교 철도전문대학원 철도안전공학과)
  • Received : 2018.04.09
  • Accepted : 2018.05.28
  • Published : 2018.08.31

Abstract

As the result(also after it's been carried out the damping force test with 800ea lateral dampers of 50ea trainset from entering heavy maintenance workshop to implement heavy maintenance inspection cycle, there were 86.25%(650ea) which were out of $350kg{\pm}15%$ of the standard value of damping force compared to the reference value. After the implementation of heavy maintenance inspection cycle, it's been examined damping force test with total samples 32ea(samples 8ea per a trainset) from actual running EMU 4ea trainset. As the result, percent defective was 84.4%(27ea), which was a very high level. System. The lateral damper's the failure cause of damping force defective was oil leakage caused by tearing crack of oil seal and foreign material in oil iron 473 ~ 1932 times higher than that of new oil, copper 36 ~ 98 times higher than that of new oil reduced oil amount cycling damping valve. It resulted from the change cause of damping force. In the static analysis on the shape of lateral damper oil seal's the existing and improved product, the stress of the improved product was smaller than that of the existing product. In the fatigue analysis, the existing product showed a low life in the upper area. However, in case of the improved product, it could be confirmed that the destruction did not occur up to the specified 1.0e + 006 cycles and the lifetime was further improved in most areas.

Keywords

References

  1. J. h. Han, J. W. Kim and J. S. Koo, "A Study on the Maintenance Policy Considering the Failure Data of the EMU Braking System and the Cost Function" J. Korean Soc. Saf., Vol. 30, No. 3, pp. 13-19, 2015. https://doi.org/10.14346/JKOSOS.2015.30.3.13
  2. Seoul Transportation Corporation, "5 - 8 Electric Multiple Unit Management Regulations", p. 12, 2017.
  3. Line5 VVVF Electric Multiple Unit Inspection Enforcement Regulations, pp. 43-44, 2017.
  4. Line6 VVVF Electric Multiple Unit Inspection Enforcement Regulations, pp. 45-46, 2017.
  5. Line 7․8-1 Electric Multiple Unit Inspection Enforcement Regulations, pp. 51-52, 2017.
  6. Line 7․8-2 Electric Multiple Unit Inspection Enforcement Regulations, pp. 51, 2017.
  7. Line5 VVVF Electric Multiple Unit Inspection Enforcement Regulations, pp. 43-44, 2017.
  8. S. J. Moon, H. S. Kim, T. Y. Chung. D. H. Lee and J. Y. Hwang "A Study on the Experimenntal Dynamic Identification of Cylindrical Oil Dampers in the Wide Frequency Range, The Korean Society for Noise and Vibration Engineering, Vol. 20, No. 6, pp. 528-536, 2010. https://doi.org/10.5050/KSNVE.2010.20.6.528
  9. S. W. Koh and S. O. Shin, "CATIA V5 Design Engineering", pp. 26-130, 2017.
  10. S. M. Lee, "Based on SolidWorks Structural and Fluid Engineering Analysis", Book Publishing Mechapia, PP. 27-45, 2010.
  11. Khaiti Nagdi, "Rubber as an Engineerin Material: Guideline for Users", pp. 155-161, 2001.
  12. Korea Railway Standard KRS RN 0021-15, Oil Damper for Electric Multiple Units, 2015.