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주조 알루미늄합금 A356을 사용한 해상구조물의 진동피로수명평가

Evaluation of Vibration Fatigue Life of Shipboard Equipment Made of Aluminum Alloy A356

  • 투고 : 2010.05.06
  • 심사 : 2010.07.05
  • 발행 : 2010.09.01

초록

함정구조물은 함내 엔진 및 프로펠러 추진력의 환경진동에 노출되어 있다. 일반적으로 함상구조물은 함상진동규격인 MIL-STD-167-1A 에 따라 개발되고 있으며, 장기간 사용을 목적으로 하는 함상구조물의 진동에 대한 피로수명은 해석적 접근법과 진동실험을 통해 반드시 평가되야 한다. 본 논문에서는 함상구조재로 사용된 주조 알루미늄합금인 A356 의 피로강도를 14 S-N 법으로 평가하고, 구조물의 작용응력은 함상진동규격에 준하는 주파수응답해석을 통해 분석되었다. 최대등가응력의 주파수는 최대실험주파수에서 나타났으며, 함상장비의 진동피로수명은 누적손상법에 의해 평가되었다.

The naval structure exposes to environmental vibration of shafted propeller propulsion and engine vibration. The shipboard equipments are developed compliance to MIL-STD-167-1A. For this purpose, vibration fatigue life of shipboard equipment for long lives should be estimate via an analytical approach and vibration test. In this paper, High cycle fatigue strength of cast aluminum alloy A356 using shipboard equipment was evaluated by 14 S-N method. The stress applied on the structure is evaluated by an analytical method(frequency response analysis with sinusoidal input and a fatigue evaluation) to simulate a MIL-STD-167-1A test. The frequency with the maximum equivalent stress is shown by Max. test frequency and the vibration fatigue life of shipboard equipment was estimated by Miner's rule.

키워드

참고문헌

  1. MIL-HDBK-5H, 1996, "Metallic Materials and Elements for Aerospace vehicle Structures," pp. 3- 480-3-483.
  2. Jung, D. W., Choi, N. S. and Park, S. H., 2009, "S-N Curve Deduction of a KTX High-Speed Train Structure for an Accelerated Life Testing," Trans. of the KSME A, Vol. 33, pp. 388-395. https://doi.org/10.3795/KSME-A.2009.33.4.388
  3. MIL-STD-167-1A, 2005, "Mechanical Vibrations of Shipboard Equipment."
  4. MSC. Software, 2005, MSC.Nastran Users guide, ver 2005.
  5. Abernethy, R.B., 1996, The New Weibull Handbook Second Edition, Robert B. Abernethy, Florida, pp. 2-7-2-9.
  6. Weibull, W., 1951, "A Statistical Distribution Function of Wide Applicability," ASME J. Applied Mech., Vol. 18, pp. 174-183.
  7. Dowling, N. E., 1993, Mechanical Behavior of Material, Prentice-Hall International Editions, pp. 383-394.
  8. Shu, H. D. and Ming, O. W., 1992, Reliability analysis in Engineering Applications, Van Nostrand Reinhold, pp. 22-24.
  9. Kececioglu, D. B., Reliability and Life Testing Handbook, Vol 1, PTR Prentice. pp.395-408.
  10. Li, Y.-M., 1994, A General Linear – Regression Analysis Applied to the Weibull Distribution, IEEE Trans. Reliability, R-43, pp.255-263. https://doi.org/10.1109/24.295002