Identyfikatory
Warianty tytułu
Języki publikacji
Abstrakty
In the paper, the process of identification of crack parameters occurring in the cantilever beam with the variable cross-sectional area has been presented. For identification, the non-destructive vibration method has been applied. The analytical solution of the free vibration problem of the beam described according to the Bernoulli-Euler theory has been obtained with the help of Green’s functions.
Rocznik
Tom
Strony
23--32
Opis fizyczny
Bibliogr 20 poz., rys.
Twórcy
autor
- Institute of Mechanics and Machine Design Foundations
autor
- Institute of Mechanics and Machine Design Foundations
autor
- Institute of Mathematics, Czestochowa University of Technology, Częstochowa, Poland
Bibliografia
- [1] Yamaguchi T., Hashimoto S., Fast crack detection method for large-size concrete surface images using percolation-based image processing, Machine Vision and Applications 2010, August, 21, 5, 797-809.
- [2] Miyazaki H., Nomura Y., Sugai H., Iijima M., Inasawa S., Kamiya H., Liquid penetration as a simple detection method for structural differences in particulate films prepared from slurries, Powder Technology 2016, 303, December, 59-67.
- [3] Li X., Jiang H., Yin G., Detection of surface crack defects on ferrite magnetic tile, Journal of Sound and Vibration 2016, 375, 4, August, 200-216.
- [4] Boaretto N., Centeno T.M., Automated detection of welding defects in pipelines from radiographic images DWDI, NDT & E International, DOI: org/10.1016/j.ndteint.2016.11.003.
- [5] Mezil S., Chigarev N., Tournat V., Gusev V., Evaluation of crack parameters by a nonlinear frequency-mixing laser ultrasonics method, Ultrasonics 2016, 69, July, 225-235.
- [6] Batabyal A.K., Sankar P., Paul T.K., Crack detection in cantilever beam using vibration response, Vibration Problems ICOVP-2007, 126 of the series Springer, Proceedings in Physics, 27-33.
- [7] Bhinge K.V., Karajagi P.G., Kulkarni S.S., Crack detection in cantilever beam by vibration techniques, International Journal of Advanced Engineering Research and Studies 2014, 80-86.
- [8] Deokar A.V., Wakchaure V.D., Experimental Investigation of Crack Detection in Cantilever Beam Using Natural Frequency as Basic Criterion, Institute of Technology, Nirma University, Ahmedabad 2011.
- [9] Meshram N.A., Pawar V.S., Analysis of crack detection of a cantilever beam using finite element analysis, International Journal of Engineering Research & Technology 2015, 4, 04, April.
- [10] Owolabi G.M., Swamidas A.S.J., Seshadri R., Crack detection in beams using changes in frequencies and amplitudes of frequency response functions, Journal of Sound and Vibration 2003, 265, 1-22.
- [11] Yamuna P., Sambasivarao K., Vibration analysis of beam with varying crack location, International Journal of Engineering Research and General Science 2014, 2, 6, October-November.
- [12] Sokół K., Linear and nonlinear vibrations of a column with an internal crack, J. Eng. Mech. 2014, 140(5), 04014021, DOI: org/10.1061/(ASCE)EM.1943-7889.0000719.
- [13] Miara M., Zastosowanie eksperymentalnej analizy modalnej do wykrywania uszkodzeń konstrukcji, Praca inżynierska, Politechnika Częstochowska, WIMiI, 2015.
- [14] Zamorska I., Cekus D., Miara M., Effect of crack parameters on free vibrations of the Berrnoulli-Euler beam, Journal of Applied Mathematics and Computational Mechanics 2015, 14(4), 167-174, DOI: 10.17512/jamcm.2015.4.17.
- [15] Cekus D., Modelowanie, identyfikacja i badania dynamiki układów mechanicznych, seria Monografie nr 275, Wydawnictwo Politechniki Częstochowskiej, Częstochowa 2013.
- [16] Cekus D., Waryś P., Identification of parameters of discrete-continuous models, AIP Conf. Proc. 2015, 1648, 850055, DOI: org/10.1063/1.4913110.
- [17] Kukla S., Zamojska I., Frequency analysis of axially loaded stepped beams by Greens’s function method, Journal of Sound and Vibration 2007, 300, 1034-1041.
- [18] Mikusiński J., Sikorski R., Elementarna teoria dystrybucji, PWN, Warszawa 1964.
- [19] Kukla S., Funkcje Greena i ich zastosowania, Seria Monografie nr 170, Wydawnictwo Politechniki Częstochowskiej, Częstochowa 2009.
- [20] Pozorski Z., Pozorska J., Stress redistribution at the support of a transversely loaded sandwich panel, [in:] Advances in Mechanics: Theoretical, Computational and Interdisciplinary Issues, Eds. M. Kleiber, T. Burczyński, K. Wilde, J. Górski, K. Winkelmann, Ł. Smakosz, CRC Press, 2016, 485-488.
Uwagi
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-25a257a9-fbd0-4153-9f05-45ac6e49b819