DOI QR코드

DOI QR Code

The Shock-Test Result and Analysis Using Dual-Pulse Shock Testing Machine

이중충격파형 충격시험장비를 이용한 충격시험 결과 및 분석

  • Bae, Jongsoo (The 7th Research and Development Institute, Agency for Defense Development)
  • 배종수 (국방과학연구소 제7기술연구본부)
  • Received : 2018.01.25
  • Accepted : 2018.05.11
  • Published : 2018.06.05

Abstract

The important issue of equipment installed in maritime weapon system is shock survivability against underwater explosion(UNDEX). If the shock survivability of equipment should not be guaranteed, the successful mission also could not be achieved. For that reason, the shock-resistance of each equipment under UNDEX environment should be demonstrated before deployment at combat field. However, the actual UNDEX test on the ocean is too expensive to conduct. Also, it has diverse dangerous factors. The main characteristic of UNDEX is a dual-pulse shock. The vertical shock test machine able to simulate dual pulse shock signal on the ground will be introduced in this paper. The dual-pulse shock signal presented in certain shock standard was achieved with this shock-test machine on the ground. The analytical procedure to set a test condition was verified by comparing simulation result with experiment result.

Keywords

References

  1. Military Specification, BV043, "Germany Defence Naval Ship Construction Specification for Shock Safety," 1985.
  2. Military Specification, MIL-S-901D, "Shock Tests, H.I(High Impact) Shipboard Machinery Equipment and Systems. Requirements for," 1989.
  3. G Wang, Y Xiong, W Tang, "A Novel Heavy-weight Shock Test Machine for Simulating Underwater Explosive Shock Environment" Int. Journal of Mechanical Sciences, Vol. 77, pp. 239-248, 2013. https://doi.org/10.1016/j.ijmecsci.2013.09.006
  4. C. W. Shul, T. H. Kim, M. S. Yang, and G. S. Lee, "Development of Large Scale Heavy Weight Shock Testing System," Proceedings of KSME Conference, pp. 377-382, 2014.
  5. Shul C. W., Kim T. H., Kim, Y. J., Yang, M. S. nd Lee G. S, H. H., “Feasibility Study on Development of Horizontal Type Shock Testing Machine Using MR Damper,” Proceedings of KSAS Annul Conference, Vol. 2013, No. 11, pp. 1075-1078, 2013.
  6. T. H. Kim, C. W. Shul, M. S. Yang, and G. S. Lee, "An Analytic Investigation on the Implementation Method for Required Signal of Heavy Weight Shock Test Machine," Proceedings of KSME Annul Conference, pp. 400-405, 2014.
  7. M. S. Kang, C. W. Shul, “A Sequential Design of Dual Pulse Generation System Based on Dynamic Analysis of Pulse Shape,” Journal of the KIMST, Vol. 20, No. 1, pp. 98-107, 2017.
  8. T. H. Kim, J. S. Bae, C. W. Shul, "Investigation on the Parameter Determination and Implementation of a Dual-Pulse Shock Test Machine Using a MR Damper," Journal of Mechanical Science and Technology, 30(12) pp. 5381-5387, 2016. https://doi.org/10.1007/s12206-016-1105-6
  9. Gaberson, H. A., "The Pseudo Velocity Shock Spectrum Rules and Concepts," Proceedings of the 60th Meeting of the Machinery Failure Prevention Technology Society, pp. 369-401, 2006.