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Oszacowanie liczby pęknięć zmęczeniowych struktury nośnej samolotu oraz kosztów jej naprawy w pierwszym okresie eksploatacji.

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Warianty tytułu
EN
Estimation of fatigue cracks number in airplane supporting structure and costs of repair in the first period of utilization.
Języki publikacji
PL
Abstrakty
EN
In the paper it is presented a probabilistic method of estimation of fatigue cracks number in an airplane supporting structure in the first utilization period. First period of utilization means time from the airplane manufacture till first general repair (overhaul). The starting point of the methods is application of a stochastic fatigue crack development models - the model proposed by Paris and Erdogan. The airplane structure is devided into zones. In each zone the Paris equation with relevant coefficients is on duty. Increment of fatigue crack lenght in each zone is described by different Paris equation resolutions. It was assumed that initial lenght of fatigue crack in each zone is random variable described by general distribution function. Considerations regard on statistical unreliability connected with detection. This method makes possible between others determination of crack probability of determined lenght, expected value and variance of general number of cracks in an airplane structure and expected value and variance of costs connected with control and repair of cracks. Considerations are illustrated by numerical example.
Rocznik
Strony
405--417
Opis fizyczny
Bibliogr. 13 poz., rys., tab.
Twórcy
  • Instytut Techniczny Wojsk Lotniczych, ul. Księcia Janusza, 00-961 Warszawa
Bibliografia
  • [1] Abelkis, P.R., Harmon, M.B. and Warren, D.S.: Continuing structural integrity program for transport aircraft. Materiały XIII Sympozjum ICAF — Durability and damage tolerance in aircraft design, Pisa 22-24.05.1985, s. 395-422.
  • [2] Feller, W.: Wstęp do rachunku prawdopodobieństwa. PWN, Warszawa 1980.
  • [3] Grandage, J.M.: Rationale for the safe operation of an aircraft fleet having known cracks in primary structure. Materiały XIII Sympozjum ICAF — Durability and damage tolerance in aircraft design, Pisa 22-24.05.1985, s. 495-510.
  • [4] Miller, M., Luthra, V.K. and Goranson, U.G.: Fatigue crack growth characterization of jet transport structures. Materiały XIV Sympozjum ICAF — New materials and fatigue resistance aircraft design, Ottawa 08-12.06.1987, s. 79-126.
  • [5] Sampath, S.G.: Aging combat aircraft fleets — long term implications. AGARD-L-S-206, 1996, I1-13.
  • [6] Sobczyk, K., Spencer, B.F.: Stochastyczne modele zmęczenia materiałów. WNT, Warszawa 1996.
  • [7] Yang, J.N.: Statistical estimation of service cracks and maintenance cost for aircraft structures. Journal of Aircraft 1976, 13, 12, 929-937.
  • [8] Yang, J.N., Hsi, W.H., Manning, S.D. and Rudd, J.L.: Stochastic crack propagation in fastener holes. Journal of Aircraft 1985, 22, 9, 810-817.
  • [9] Yang, J.N. and Manning S.D.: Advanced durability analysis. Volume l —Analytical predictions. Air Force Wright Aeronautical Laboratories, Wright-Patterson AFB, AFWAL-TR-86-3017, 1987.
  • [10] Yang, J.N. and Manning, S.D.: Advanced durability analysis. Volume II — Analytical predictions, Test results and analytical correlation. Air Force Wright Aeronautical Laboratories Wright-Patterson AFB, AFWAL-TR-86-3017, 1988.
  • [11] Yang, J.N. and Manning, S.D.: USAF durability design handbook; Guidelines for the analysis and design of durable aircraft structures. Air Force Wright Aeronautical Laboratoria Wright-Patterson AFB, AFWAL-TR-83-3027, 1989.
  • [12] Yang, J.N. and Manning, S.D.: Demonstration of probabilistic-based durability analysis method for metalic airframes. Journal of Aircraft 1990, 27, 2, 169-175.
  • [13] Yang, J.N. and Manning, S.D.: Aircraft fleet maintenance based on structural reliability analysis. Journal of Aircraft 1994, 31, 2, 419-425.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BOS1-0005-0049
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