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Detekcja uszkodzeń w konstrukcjach metodą propagacji fal sprężystych

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Warianty tytułu
EN
Damage detection of structures by the method of elastic wave propagation
Języki publikacji
PL
Abstrakty
PL
W Artykule przedstawiono zastosowanie zjawiska propagacji fal sprężystych do wykrywania uszkodzeń w elementach konstrukcyjnych jedno- i dwuwymiarowych. Zaprezentowano wyniki symulacji numerycznych, a także badań eksperymentalnych. Zwrócono uwagę na zachowanie się fal sprężystych w elementach kompozytowych i problemy pojawiające się przy projektowaniu systemu detekcji uszkodzeń.
EN
This work presents application of the elastic wave propagation for damage detection in 1D structural elements. The results of numerical simulations and experimental investigations are shown. It has been noticed that elastic wave behaviour are important in damage detection of composite elements.
Rocznik
Strony
88--92
Opis fizyczny
Bibliogr. 29 poz.
Twórcy
autor
  • Instytut Maszyn Przepływowych PAN, Gdańsk
Bibliografia
  • [1] Rytter A., Vibration based inspection ofcivil engineering structures, praca doktorska, Dania, Department of Building Technology and Structural Engineering, University of Aalborg, 1993
  • [2] Verdict G.S., Gien P.H, Burger C.P., Finite element study of Lamb wave interactions with holes and through thickness defects in thin metal plates, in: Thompson D.O., Chimenti D.E., Review of Progress in Quantitative Non-destructive Evaluation, 11, 97-104, 1992
  • [3] Biemans C, et al., Crack detection in metallic structures using piezoceramic sensors. Proceedings of the International Conference on Damage Assessment of Structures, Dublin, Ireland, June 28-30 (112-121), 1999
  • [4] Boller C, Fundamentals of damage monitoring. Smart Structures and Materials: Implications for Military Aircraft of New Generation, AGARD Lecture Series 205, Amsterdam, November 18-19, (4.1-4.15), 1996
  • [5] Boller C., Ways and options for aircraft structural health management. European COST F3 Conference on System Identification and Structural Health Monitoring, Madrid, Spain, June 6-9, (71-82), 2000
  • [6] Castanien K. E., Liang C, Application of active structural monitoring techniąue to aircraft fuselage structures. Proceedings of the SPIE Smart Structures and Materials Conference, 26-29 February, San Diego, USA (38^9). 1996
  • [7] Staszewski W.J., Ultrasonic/guided waves for structural health monitoring. Key Engineering Materials, vols. 293-294, 49-60, September 2005
  • [8] Cawley P., Simonetti F., Structural Health Monitoring using guided waves -potential and challenges, in: Structural health monitoring 2005: Advancements and challenges for implementation, edited by Fu-Kuo Chang, Stanford University, DE Stech Publications. Inc.. September 12-14, 2005
  • [9] Ostachowicz W. M., Krawczuk M., Analysis ofthe effect ofcracks on the natural frequencies of a cantilever beam. Journal of Sound and Vibration (Academic Press), Vol.l50, No.2, (191-201), 1991
  • [10] Ostachowicz W. M., Krawczuk M., Coupled tensional and bending vibrations of a rotor with an open crack. Archive of Applied Mechanics (Springer-Verlag), No.62, (191-201), 1992 [11] Ostachowicz W. M., Krawczuk M., Parametric vibrations of beam with crack. Archive of Applied Mechanics (Springer- Verlag) No.62, (463-173), 1992
  • [12] Ostachowicz W. M., Krawczuk M., Dynamic analysis of delaminated composite beam. Machine Vibration (Springer-Verlag), No.3, (107-116), 1994
  • [13] Ostachowicz W. M., Krawczuk M., Żak A., Dynamics of cracked composite material! structures. Finał Report for U. S. Army Research Office, No. N68172-94-C-9108 (1-^5), 1995
  • [14] Ostachowicz W., Kawiecki G., Vibrational response of aero-excited composite plates subjected to damage growth. in: Structural Health Monitoring, edited by Fu-Kuo Chang, Technomic Publishing Co., Inc., Lancaster-Basel (1038-1047), 1999
  • [15] Doyle J.F., Wave Propagation in Structures, Springer-Verlag, 1997
  • [16] Krawczuk M., Palacz M., Ostachowicz W., The dynamic analysis of racked Timoshenko beam by the spectra! element method, Journal of Sound and Vibration, 264, 1139-1153, 2003 [17] Mahapatra D.R., Golpalakrishnan S., A spectra! finite element model for analysis of axial-flexura!-shear coupled wave propagation in laminated composite beams, Computers and Structures, 59, 67-88, 2003
  • [18] Palacz M., Krawczuk M., Analysis of longitudinal wave propagation in a cracked rod by the spectral element method, Computers and Structures, 80, 1809-1816, 2002
  • [19] Patera A.T., A spectral element method for fluid dynamics: Laminar jlow in a channel expansion, Journal of Computational Physics, 54, 468-188, 1984
  • [20] Boyd J.P., Cheybyshev and Fourier spectral methods, Springer, 1989
  • [21] Pozrikidis C, Introduction to Finite and Spectral Element Methods using MATLAB®, Chapman & Hall/CRC, 2005
  • [22] Dauksher W., Emery A.F.,Accuracy in modeling the acoustic wave eąuation with Chebyshev spectral finite elements, Finite Elementsin Analysis and Design, 26: 115-128, 1997 [23] Komatitsch D., Martin R., Tromp J., Taylor M.A., Wingate B.A., Wave propagation in 2-D elastic media using spectral element method with triangles and quadrangles, Journal of Computational Acoustics, 2: 703-718, 2001
  • [24] Alleyne D.N., Pavlakovic B., Lowe M.J.S., Cawley P., Insight, vol. 43, 93, 2001.
  • [25] Wilcox R, Evans M., Pavlakovic B., Alleyne D., Vine K., Cawley R, Lowe M.J.S., Insight, vol. 45, 413, 2003
  • [26] Wilcox R, Lowe M., Cawley R, The effect of dispersion on long-range inspection using ultrasonic guided waves, NDT&E Int, 34: 1-9, 2001
  • [27] Monkhouse R.S.C., Wilcox P.W., Lowe M.J.S., Dalton R.R, Cawley R, The rapid monitoring of structures using interdigital Lamb wave transducers, Smart Materials Structures, 9, 304-309, 2000
  • [28] Staszewski W.J., Worden K., Signal processing for damage detection, in: Health Monitoring of Aerospace Structures: Smart Sensor Technologies and Signal Processing, Staszewski W.J., Boller C, Tomlinson G.R., John Wiley & Sons, Ltd, 2003
  • [29] Lingyu Yu, Giurgiutiu V., Advanced signal processing for enhanced damage detection with piezoelectric wafer active sensors, Smart Structures and System. 2(1). 185-215. 2005
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BSL7-0013-0024
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