Magnetoelastic Coupled Wave Diffraction and Dynamic Stress Intensity Factor in Graded Piezomagnetic Composites with a Cylindrical Aperture
Abstract
:1. Introduction
2. Dynamics Equation and Maxwell’s Equation in EGPMs and the Solutions
3. Boundary Conditions and Determination of Mode Coefficients
4. Dynamic Stress Intensity Factors
5. Numerical Examples Simulation and Discussion
6. Conclusions
Author Contributions
Funding
Acknowledgments
Conflicts of Interest
References
- Martin, P.A. Scattering by defects in an exponentially graded layer and misuse of the method of images. Int. J. Solids Struct. 2011, 48, 2164–2166. [Google Scholar] [CrossRef] [Green Version]
- Yang, Q.; Gao, C.F.; Chen, W.T. Stress analysis of a functional graded material plate with a circular hole. Arch. Appl. Mech. 2010, 80, 895–907. [Google Scholar] [CrossRef]
- Zhou, C.P.; Hu, C.; Ma, F.; Liu, D.K. Elastic wave scattering and dynamic stress intensitys in exponential graded materials with two elliptic cavities. Wave Motion 2013, 51, 466–475. [Google Scholar] [CrossRef]
- Jiao, F.Y.; Wei, P.J.; Li, L. Wave propagation through an inhomogeneous slab sandwiched by the piezoelectric and the piezomagnetic half spaces. Ultrasonics 2017, 73, 22–33. [Google Scholar] [CrossRef] [PubMed]
- Liang, W.; Fang, D.N.; Shen, Y.; Soh, A.K. Nonlinear magneto-elastic coupling effects in a soft ferromagnetic material with a crack. Int. J. Solids Struct. 2002, 39, 3997–4011. [Google Scholar] [CrossRef]
- Lin, C.B.; Lin, H.M. The magneto-elastic problem of cracks in bonded dissimilar materials. Int. J. Solids Struct. 2002, 39, 2807–2826. [Google Scholar] [CrossRef]
- Wang, B.L.; Mai, Y.W. Crack tip field in piezoelectric/piezomagnetic media. Eur. J. Mech. A-Solid 2003, 22, 591–602. [Google Scholar] [CrossRef]
- Cao, X.; Shi, J.; Jin, F. Lamb wave propagation in the functionally graded piezoelectric-piezomagnetic material plate. Acta. Mech. 2012, 223, 1081–1091. [Google Scholar] [CrossRef]
- Singh, B.M.; Rokne, J. Propagation of SH waves in layered functionally graded piezoelectric-piezomagnetic structures. Philos. Mag. 2013, 93, 1690–1700. [Google Scholar] [CrossRef]
- Tian, R.M.; Kong, Y.P.; Liu, J.X. SH waves in functionally graded piezoelectric-piezomagnetic material structures. In Proceedings of the 2012 Symposium on Piezoelectricity, Acoustic Waves, and Device Applications (SPAWDA), Shanghai, China, 23–25 November 2012; pp. 237–240. [Google Scholar]
- Zhao, X.; Liu, X.L.; Liu, S.; Liu, J.X. SH interfacial wave in a functionally graded piezoelectric /piezomagnetic bi-material with an imperfect interface. J. Vib. Shock 2014, 33, 183–187. [Google Scholar]
- Pang, Y.; Wang, Y.S.; Liu, J.X.; Fang, D.N. A study of the band structures of elastic wave propagating in piezoelectric/piezomagnetic layered periodic structures. Smart Mater. Struct. 2010, 19, 055012. [Google Scholar] [CrossRef]
- Zhang, B.; Yu, J.; Shah, A.A. Wave propagation in functionally graded piezoelectric- piezomagnetic rectangular bars. Sci. Eng. Compos. Mater. 2017, 24, 317–326. [Google Scholar] [CrossRef] [Green Version]
- Kong, Y.P.; Liu, J.X.; Nie, G.Q. Propagation characteristics of SH waves in a functionally graded piezomagnetic layer on PMN-0.29PT single crystal substrate. Mech. Res. Commun. 2016, 73, 107–112. [Google Scholar] [CrossRef]
- Sahu, S.A.; Mondal, S.; Dewangan, N. Polarized shear waves in functionally graded piezoelectric material layer sandwiched between corrugated piezomagnetic layer and elastic substrate. J. Sandw. Struct. Mater. 2017, 21, 2921–2948. [Google Scholar] [CrossRef]
- Pao, Y.H.; Mow, C.C. Diffraction of Elastic Wave and Dynamic Stress Intensity; Crane Russak & Company: New York, NY, USA, 1973. [Google Scholar]
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Jiang, Y.; Zhou, C.; Wang, B.; Wu, L. Magnetoelastic Coupled Wave Diffraction and Dynamic Stress Intensity Factor in Graded Piezomagnetic Composites with a Cylindrical Aperture. Materials 2020, 13, 669. https://doi.org/10.3390/ma13030669
Jiang Y, Zhou C, Wang B, Wu L. Magnetoelastic Coupled Wave Diffraction and Dynamic Stress Intensity Factor in Graded Piezomagnetic Composites with a Cylindrical Aperture. Materials. 2020; 13(3):669. https://doi.org/10.3390/ma13030669
Chicago/Turabian StyleJiang, Yinhuan, Chuanping Zhou, Ban Wang, and Liqun Wu. 2020. "Magnetoelastic Coupled Wave Diffraction and Dynamic Stress Intensity Factor in Graded Piezomagnetic Composites with a Cylindrical Aperture" Materials 13, no. 3: 669. https://doi.org/10.3390/ma13030669
APA StyleJiang, Y., Zhou, C., Wang, B., & Wu, L. (2020). Magnetoelastic Coupled Wave Diffraction and Dynamic Stress Intensity Factor in Graded Piezomagnetic Composites with a Cylindrical Aperture. Materials, 13(3), 669. https://doi.org/10.3390/ma13030669