Blucher Mechanical Engineering Proceedings
- Todas as edições
- Última edição
- Equipe de Produção
- ISSN 2358-0828
AABEAM SPECTRAL FINITE ELEMENTS FOR MODELLING OF PROPAGATING WAVES IN COMPOSITE LAMINATES UNDER ENVIRONMENTAL EFFECTS
AABEAM SPECTRAL FINITE ELEMENTS FOR MODELLING OF PROPAGATING WAVES IN COMPOSITE LAMINATES UNDER ENVIRONMENTAL EFFECTS
Ostachowicz, W.; Kudela, P.; Lonkar, K.
Full Article:
This paper present a numerical model based on Timoshenko theory and spectral element method. The model is used for wave propagation analysis under environmental effects such as external loading, temperature and moisture. The model also incorporates open crack calculated using fracture mechanics laws. The aim of this paper is investigation of various features extensively used in application for damage detection such as wave packet amplitude, time of flight or peak of power spectral density. The study of these parameters is necessary for compensation of environmental influence on wave propagation which affects accuracy of damage identification.
This paper present a numerical model based on Timoshenko theory and spectral element method. The model is used for wave propagation analysis under environmental effects such as external loading, temperature and moisture. The model also incorporates open crack calculated using fracture mechanics laws. The aim of this paper is investigation of various features extensively used in application for damage detection such as wave packet amplitude, time of flight or peak of power spectral density. The study of these parameters is necessary for compensation of environmental influence on wave propagation which affects accuracy of damage identification.
Palavras-chave:
DOI: 10.5151/meceng-wccm2012-18616
Referências bibliográficas
- [1] Blaise E., F.K. Chang, “Built–in diagnostics for debonding in sandwich structures under extreme temperatures”. Proceedings of the 3rd International Workshop on SHM, 154–163, Stanford, California, USA, 2001.
- [2] Lu Y., Michaels J.E., “A methodology for structural health monitoring with diffuse ultrasonic waves in the presence of temperature variations”. Ultrasonics. 43, 717–731, 2005.
- [3] Konstantinidis G., Wilcox P.D., Drinkwater B.W. „An Investigation Into the Temperature Stability of a Guided Wave Structural Health Monitoring System Using Permanently Attached Sensors”. IEEE Sens. J. 7(5), 905–912, 2007.
- [4] Roy S., Lonkar, K., Janapati, V., Chang, F.–K., "Physics Based Temperature Compensation Strategy for Structural Health Monitoring". Proceedings of the 8th International Workshop on SHM, Stanford University, USA, 1, 1139–1149, 2011.
- [5] Ha S., Lonkar, K., Mittal, A., Chang, F.–K., "Adhesive Layer Effects on PZT–induced Lamb Waves at Elevated Temperatures". SHM J., 26, 247–256, 2010.
- [6] Kudela P., Ostachowicz W., Zak A., “Influence of temperature fields on wave propagation in composite plates”. Key Engineering Materials, 347, 537–542, 2007.
- [7] Vinson J.R., Sierakowski R.L., “Behaviour of Structures Composed of Composite Materials”, Martinus Nijhoff, Dorchester, 1989.
- [8] Abdel–Magdid B., Ziaee S., Gass K., Schneider M.,“The combined effects of load, moisture and temperature on the properties of E–glass/epoxy composites”. Compos. Struct., 71, 320–326, 2005.
- [9] Tsai Ch.L., Wang Ch.H., Chang J.–J., Yeih W., “Tracking hygrothermal strains of carbon/epoxy composite under varying temperature and humidity”. J Compos. Mater. 42(16), 1597–1618, 2008.
- [10] Sai Ram K.S., Sinha P.K, “Hygrothermal effects on the free vibration of laminated composite plates”, J. Sound Vib., 158(1), 133–148, 1992.
- [11] Chen F., Wilcox P. D., "The effect of load on guided wave propagation". Ultrasonics, 47(1–4), 645–649, 2007.
- [12] Hayashi T., Song W.–J., Rose J. L., “Guided wave dispersion curves for a bar with an arbitrary cross–section, a rod and rail example”. Ultrasonics, 41, 175–183, 2003.
- [13] Lematre M., Feuillard G., Clézio E. L., Lethiecq M., "Modeling of the influence of a prestress gradient on guided wave propagation in piezoelectric structures". J Acoust. Soc. Am., 120(4), 1964–1975, 2006.
- [14] Chakraborty A., “The effect of surface stress on the propagation of Lamb waves”. Ultrasonics, 50, 645–649, 2010.
- [15] Karadeniz Z.H., Kumlutas D., “A numerical study on the coefficients of thermal expansion of fibre reinforced composite materials”. Compos. Struct. 78, 1–10, 2007.
- [16] Ostachowicz W, Kudela P., Krawczuk M., Zak A. ,“Guided Waves in Structures for SHM: The Time–domain Spectral Element Method”, Wiley, 2012.
- [17] Tada H., Paris P.C., Irwin G.R., “The Stress Analysis of Cracks Handbook”, Del Research Corporation, Hellertown, PA, 1973.
Como citar:
Ostachowicz, W.; Kudela, P.; Lonkar, K.; "AABEAM SPECTRAL FINITE ELEMENTS FOR MODELLING OF PROPAGATING WAVES IN COMPOSITE LAMINATES UNDER ENVIRONMENTAL EFFECTS", p-1990-2002.
In: In Proceedings of the 10th World Congress on Computational Mechanics [= Blucher Mechanical Engineering Proceedings, v. 1, n. 1].
São Paulo: Blucher,
2014.
ISSN 23580828,
DOI 10.5151/meceng-wccm2012-18616
últimos 30 dias
77
downloads
249
visualizações
793
indexações
Sou autor desse trabalho
Você é citado neste trabalho?
Exportar citação - RefWork (RIS)
Copie a citação abaixo ou clique no botão Download para obter um arquivo com os dados
TY - CONF T1 - AABEAM SPECTRAL FINITE ELEMENTS FOR MODELLING OF PROPAGATING WAVES IN COMPOSITE LAMINATES UNDER ENVIRONMENTAL EFFECTS JO - Blucher Mechanical Engineering Proceedings VL - 1 IS - 1 SP - 1990 EP - 2002 PY - 2014 T2 - 10th World Congress on Computational Mechanics AU - , , SN - 23580828 DO - http://dx.doi.org/10.5151/meceng-wccm2012-18616 UR - www.proceedings.blucher.com.br/article-details/aabeam-spectral-finite-elements-for-modelling-of-propagating-waves-in-composite-laminates-under-environmental-effects-9140 KW - ER -
Exportar citação - BibTeX(BIB)
Copie a citação abaixo ou clique no botão Download para obter um arquivo com os dados
@article{Ostachowicz20144,
title="AABEAM SPECTRAL FINITE ELEMENTS FOR MODELLING OF PROPAGATING WAVES IN COMPOSITE LAMINATES UNDER ENVIRONMENTAL EFFECTS",
journal="Blucher Mechanical Engineering Proceedings",
volume="1",
number="1",
pages="1990 - 2002",
year="2014",
note="",
issn="23580828",
doi="http://dx.doi.org/10.5151/meceng-wccm2012-18616",
url="www.proceedings.blucher.com.br/article-details/aabeam-spectral-finite-elements-for-modelling-of-propagating-waves-in-composite-laminates-under-environmental-effects-9140",
author="W. Ostachowicz", "P. Kudela", "K. Lonkar",
keywords="",
}
Exportar citação - Text(TXT)
Copie a citação abaixo ou clique no botão Download para obter um arquivo com os dados
W. Ostachowicz, P. Kudela, K. Lonkar, AABEAM SPECTRAL FINITE ELEMENTS FOR MODELLING OF PROPAGATING WAVES IN COMPOSITE LAMINATES UNDER ENVIRONMENTAL EFFECTS, Blucher Mechanical Engineering Proceedings, Volume 1, 2014, Pages 1990-2002, ISSN 23580828, http://dx.doi.org/10.5151/meceng-wccm2012-18616 (www.proceedings.blucher.com.br/article-details/aabeam-spectral-finite-elements-for-modelling-of-propagating-waves-in-composite-laminates-under-environmental-effects-9140) Palavras-chave:: ;