BibTex RIS Kaynak Göster
Yıl 2012, Cilt: 4 Sayı: 2, 1 - 8, 01.06.2012

Öz

Kaynakça

  • Vandive, J.K., Detection of structural failures on fixed platforms by measurement of dynamic responses, Proceedings of the 7th Annual Offshore Technology Conference, Houston, Texas, 1975.
  • Crohas, H. and Lepert, P., Damage detection monitoring method for offshore platforms is field tested, Oil& Gas J., 80, 94-103, 1982.
  • Cawley, P. and Adams, R.D., The location of defects in structures from measurements of natural frequencies, J. Strain Anal., 14, 49-57, 1979.
  • Pandey, A.K., Biswas, M. And Samman, M.M., Damage detection from changes in curvature mode shapes, J. Sound Vib, 145, 321-332, 1991.
  • Chance, J., Tomlinson, G.R. and Worden, K., A simplified approach to the numerical and experimental modeling of the dynamics of a cracked beam, Proceedings of the 12th International Modal Analysis Conference, Honolulu, Hawaii, 1994.
  • Stubbs, N. And Osegueda, R., Global non-destructive damage evaluation in solids, Int. j. analyt. exp. modal anal., 5, 67-79, 1990.
  • Wu, X., Ghaboussi, J. and Garrett, J. H., Use of neural networks in detection of structural damage, Comput. Struct., 42, 649-659, 1992.
  • Kaouk, M. and Zimmerman, D.C., Structural damage assessment using a generalized minimum rank perturbation theory, AIAA J., 32, 836–842, 1994.
  • Kim, J.T. and Stubbs, N., Model uncertainty and damage detection accuracy in plate- girder bridges, J. Struct. Eng., 121, 1409-1417, 1995.
  • Dimarogonas, A.D., Vibration of cracked structures: a state of the art review, Eng. Fract. Mech., 55, 831-857, 1996.
  • Douka, E., Loutridis, S. and Trochidis, A., Crack identification in beams using wavelet analysis, Int J Solids Struct., 40, 3557-3569, 2003.
  • Dimarogonas, A.D., Vibration Engineering, West Publishers, St Paul, Minesota, 1976.
  • Paipetis, S.A. Dimarogonas, A.D., Analytical method in rotor dynamics, Appl. Sci. London,1986.
  • Adams, A.D. and Cawley, P., The location of defects in structures from measurements of natural frequencies, J. Strain Anal., 14, 49-57, 1979.
  • Chondros, T.G. and Dimarogonas, A.D., Identification of cracks in welded joints of complex structures, J. Sound Vib., 69, 531-538, 1980.
  • Goudmunson, P., Eigenfrequency change of structures: a state of the art review, Eng. Frac. Mech., 55, 831-857, 1982.
  • Masoud, A., Jarrad, M.A. and Al-Maamory, M., Effect of crack depth on the natural frequency of a prestressed fixed-fixed beam, J. Sound Vib., 214, 201-212, 1998.
  • Shen, M.-H. and Taylor, J.E., An identification problem for vibrating cracked beams, J. Sound Vib., 84, 150-457, 1991.
  • Liang, R.Y., Hu, J. and Choy, F., Theoretical study of crack-induced eigenfrequency changes on beam structures, J. Eng. Mech., 118, 384-396, 1992.
  • Kim, J.-T. and Stubbs, N., Crack detection in beam-type structures using frequency data, J. Sound Vib., 259, 145–160, 2003.
  • Wu, X., Ghaboussi, J. and Garret, J.H., Use of neural networks in detection of structural damage, Comput. Struct., 42 , 649-659, 1992.
  • Kao, C.Y. and Hung, S.L., Detection of structural damage via free vibration responses generated by approximating artificial neural networks, Comput. Struct., 81, 2631-2644, 2003. [23] Chen, Q., Chan, Y.W. and Worden, K., Structural fault diagnosis and isolation using neural networks based on response-only data, Comput. Struct., 81, 2165-2172, 2003.
  • A.S. Sekhar, “Multiple cracks effects and identification,” Mech syst signal proc., vol. 22, pp. 845-878, May. 2008.
  • J. Lee, “Identification of multiple cracks in a beam using natural frequencies,” J. Sound. Vib., vol. 320, pp. 482-490, Feb. 2009.
  • D.P. Patil, and S.K. Maiti, “Detection of multiple cracks using frequency measurements,” Eng. Fract. Mech., vol. 70, pp. 1553-1572, Aug. 2003.
  • K. Mazanoglu, I. Yesilyurt, and M. Sabuncu, “Vibration analysis of multiple-cracked non-uniform beams,” J. Sound. Vib., vol. 320, pp. 977-989, May. 2009.
  • B. Binici, “Vibration of beams with multiple open cracks subjected to axial force,” J. Sound. Vib, vol. 287, pp. 277-295, Oct. 2005
  • N.T. Khiem, and T.V. Lien, “A simplified method for natural frequency analysis of a multiple cracked beam,” J. Sound. Vib., vol. 245, pp. 737-751, Aug. 2001.
  • E. Cam, O. Sadettin, and L. Murat, “An analysis of cracked beam structure using impact echo method,” NDT. E. Int., vol. 38, pp. 368-373, Jul. 2005.
  • Chaudhari, T.D., Maiti, S. K.: Modelling of transverse vibration of beam of linearly variable depth with edge crack. Eng. Fract. Mech, 63, 425-445, 1999.
  • McClelland, J.L. and Rumelhart, D.E., Parallel distributed processing: Explorations in the Microstructure of Cognition, Volumes I and II, MIT Press, Cambridge, Massachusetts, USA, 1986.

INVESTIGATION OF NATURAL FREQUENCIES REDUCTION, AN APPROACH TO DAMAGE DIAGNOSIS IN STRUCTURES

Yıl 2012, Cilt: 4 Sayı: 2, 1 - 8, 01.06.2012

Öz

This paper present an approach based on reduction of natural frequencies of structures in order to identification of damage. In the proposed method, the crack identification procedure consists of three steps. Firstly, using finite element method, three natural frequencies of a variable cross-section beam for different cracks depth and locations are obtained. In the second step, two types of networks are created and trained. The neural networks inputs are first three natural frequencies and the outputs of first and second networks are corresponding locations and cracks depth, respectively. In third step, some of natural frequencies of variable cross-section beam with distinct crack conditions are applied as inputs for trained neural networks. Finally obtained results of two types of neural networks are compared with each other

Kaynakça

  • Vandive, J.K., Detection of structural failures on fixed platforms by measurement of dynamic responses, Proceedings of the 7th Annual Offshore Technology Conference, Houston, Texas, 1975.
  • Crohas, H. and Lepert, P., Damage detection monitoring method for offshore platforms is field tested, Oil& Gas J., 80, 94-103, 1982.
  • Cawley, P. and Adams, R.D., The location of defects in structures from measurements of natural frequencies, J. Strain Anal., 14, 49-57, 1979.
  • Pandey, A.K., Biswas, M. And Samman, M.M., Damage detection from changes in curvature mode shapes, J. Sound Vib, 145, 321-332, 1991.
  • Chance, J., Tomlinson, G.R. and Worden, K., A simplified approach to the numerical and experimental modeling of the dynamics of a cracked beam, Proceedings of the 12th International Modal Analysis Conference, Honolulu, Hawaii, 1994.
  • Stubbs, N. And Osegueda, R., Global non-destructive damage evaluation in solids, Int. j. analyt. exp. modal anal., 5, 67-79, 1990.
  • Wu, X., Ghaboussi, J. and Garrett, J. H., Use of neural networks in detection of structural damage, Comput. Struct., 42, 649-659, 1992.
  • Kaouk, M. and Zimmerman, D.C., Structural damage assessment using a generalized minimum rank perturbation theory, AIAA J., 32, 836–842, 1994.
  • Kim, J.T. and Stubbs, N., Model uncertainty and damage detection accuracy in plate- girder bridges, J. Struct. Eng., 121, 1409-1417, 1995.
  • Dimarogonas, A.D., Vibration of cracked structures: a state of the art review, Eng. Fract. Mech., 55, 831-857, 1996.
  • Douka, E., Loutridis, S. and Trochidis, A., Crack identification in beams using wavelet analysis, Int J Solids Struct., 40, 3557-3569, 2003.
  • Dimarogonas, A.D., Vibration Engineering, West Publishers, St Paul, Minesota, 1976.
  • Paipetis, S.A. Dimarogonas, A.D., Analytical method in rotor dynamics, Appl. Sci. London,1986.
  • Adams, A.D. and Cawley, P., The location of defects in structures from measurements of natural frequencies, J. Strain Anal., 14, 49-57, 1979.
  • Chondros, T.G. and Dimarogonas, A.D., Identification of cracks in welded joints of complex structures, J. Sound Vib., 69, 531-538, 1980.
  • Goudmunson, P., Eigenfrequency change of structures: a state of the art review, Eng. Frac. Mech., 55, 831-857, 1982.
  • Masoud, A., Jarrad, M.A. and Al-Maamory, M., Effect of crack depth on the natural frequency of a prestressed fixed-fixed beam, J. Sound Vib., 214, 201-212, 1998.
  • Shen, M.-H. and Taylor, J.E., An identification problem for vibrating cracked beams, J. Sound Vib., 84, 150-457, 1991.
  • Liang, R.Y., Hu, J. and Choy, F., Theoretical study of crack-induced eigenfrequency changes on beam structures, J. Eng. Mech., 118, 384-396, 1992.
  • Kim, J.-T. and Stubbs, N., Crack detection in beam-type structures using frequency data, J. Sound Vib., 259, 145–160, 2003.
  • Wu, X., Ghaboussi, J. and Garret, J.H., Use of neural networks in detection of structural damage, Comput. Struct., 42 , 649-659, 1992.
  • Kao, C.Y. and Hung, S.L., Detection of structural damage via free vibration responses generated by approximating artificial neural networks, Comput. Struct., 81, 2631-2644, 2003. [23] Chen, Q., Chan, Y.W. and Worden, K., Structural fault diagnosis and isolation using neural networks based on response-only data, Comput. Struct., 81, 2165-2172, 2003.
  • A.S. Sekhar, “Multiple cracks effects and identification,” Mech syst signal proc., vol. 22, pp. 845-878, May. 2008.
  • J. Lee, “Identification of multiple cracks in a beam using natural frequencies,” J. Sound. Vib., vol. 320, pp. 482-490, Feb. 2009.
  • D.P. Patil, and S.K. Maiti, “Detection of multiple cracks using frequency measurements,” Eng. Fract. Mech., vol. 70, pp. 1553-1572, Aug. 2003.
  • K. Mazanoglu, I. Yesilyurt, and M. Sabuncu, “Vibration analysis of multiple-cracked non-uniform beams,” J. Sound. Vib., vol. 320, pp. 977-989, May. 2009.
  • B. Binici, “Vibration of beams with multiple open cracks subjected to axial force,” J. Sound. Vib, vol. 287, pp. 277-295, Oct. 2005
  • N.T. Khiem, and T.V. Lien, “A simplified method for natural frequency analysis of a multiple cracked beam,” J. Sound. Vib., vol. 245, pp. 737-751, Aug. 2001.
  • E. Cam, O. Sadettin, and L. Murat, “An analysis of cracked beam structure using impact echo method,” NDT. E. Int., vol. 38, pp. 368-373, Jul. 2005.
  • Chaudhari, T.D., Maiti, S. K.: Modelling of transverse vibration of beam of linearly variable depth with edge crack. Eng. Fract. Mech, 63, 425-445, 1999.
  • McClelland, J.L. and Rumelhart, D.E., Parallel distributed processing: Explorations in the Microstructure of Cognition, Volumes I and II, MIT Press, Cambridge, Massachusetts, USA, 1986.
Toplam 31 adet kaynakça vardır.

Ayrıntılar

Diğer ID JA66AG78YP
Bölüm Makaleler
Yazarlar

S.S. Malihi Bu kişi benim

F. Nazari Bu kişi benim

S. Baghalian Bu kişi benim

M.A. Kazemi Bu kişi benim

Yayımlanma Tarihi 1 Haziran 2012
Yayımlandığı Sayı Yıl 2012 Cilt: 4 Sayı: 2

Kaynak Göster

APA Malihi, S., Nazari, F., Baghalian, S., Kazemi, M. (2012). INVESTIGATION OF NATURAL FREQUENCIES REDUCTION, AN APPROACH TO DAMAGE DIAGNOSIS IN STRUCTURES. International Journal of Engineering and Applied Sciences, 4(2), 1-8.
AMA Malihi S, Nazari F, Baghalian S, Kazemi M. INVESTIGATION OF NATURAL FREQUENCIES REDUCTION, AN APPROACH TO DAMAGE DIAGNOSIS IN STRUCTURES. IJEAS. Haziran 2012;4(2):1-8.
Chicago Malihi, S.S., F. Nazari, S. Baghalian, ve M.A. Kazemi. “INVESTIGATION OF NATURAL FREQUENCIES REDUCTION, AN APPROACH TO DAMAGE DIAGNOSIS IN STRUCTURES”. International Journal of Engineering and Applied Sciences 4, sy. 2 (Haziran 2012): 1-8.
EndNote Malihi S, Nazari F, Baghalian S, Kazemi M (01 Haziran 2012) INVESTIGATION OF NATURAL FREQUENCIES REDUCTION, AN APPROACH TO DAMAGE DIAGNOSIS IN STRUCTURES. International Journal of Engineering and Applied Sciences 4 2 1–8.
IEEE S. Malihi, F. Nazari, S. Baghalian, ve M. Kazemi, “INVESTIGATION OF NATURAL FREQUENCIES REDUCTION, AN APPROACH TO DAMAGE DIAGNOSIS IN STRUCTURES”, IJEAS, c. 4, sy. 2, ss. 1–8, 2012.
ISNAD Malihi, S.S. vd. “INVESTIGATION OF NATURAL FREQUENCIES REDUCTION, AN APPROACH TO DAMAGE DIAGNOSIS IN STRUCTURES”. International Journal of Engineering and Applied Sciences 4/2 (Haziran 2012), 1-8.
JAMA Malihi S, Nazari F, Baghalian S, Kazemi M. INVESTIGATION OF NATURAL FREQUENCIES REDUCTION, AN APPROACH TO DAMAGE DIAGNOSIS IN STRUCTURES. IJEAS. 2012;4:1–8.
MLA Malihi, S.S. vd. “INVESTIGATION OF NATURAL FREQUENCIES REDUCTION, AN APPROACH TO DAMAGE DIAGNOSIS IN STRUCTURES”. International Journal of Engineering and Applied Sciences, c. 4, sy. 2, 2012, ss. 1-8.
Vancouver Malihi S, Nazari F, Baghalian S, Kazemi M. INVESTIGATION OF NATURAL FREQUENCIES REDUCTION, AN APPROACH TO DAMAGE DIAGNOSIS IN STRUCTURES. IJEAS. 2012;4(2):1-8.

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