Applied Mathematics and Mechanics (English Edition) ›› 2024, Vol. 45 ›› Issue (4): 619-632.doi: https://doi.org/10.1007/s10483-024-3104-9
• Articles • Previous Articles Next Articles
Xin FENG1,2, Liaoliang KE2, Yang GAO1,*()
Received:
2023-11-21
Online:
2024-04-01
Published:
2024-04-08
Contact:
Yang GAO
E-mail:gaoyangg@gmail.com
Supported by:
2010 MSC Number:
Xin FENG, Liaoliang KE, Yang GAO. Love wave propagation in one-dimensional piezoelectric quasicrystal multilayered nanoplates with surface effects. Applied Mathematics and Mechanics (English Edition), 2024, 45(4): 619-632.
1 | WHITE, R. M., and VOLTMER, F. W. Direct piezoelectric coupling to surface elastic waves. Applied Physics Letters, 7 (12), 314- 316 (1965) |
2 | DU, J. K., JIN, X., and WANG, J. Love wave propagation in layered magnetoelectro-elastic structures. Science in China Series G: Physics, Mechanics and Astronomy, 51 (6), 617- 631 (2008) |
3 | DU, J. K., JIN, X. Y., and WANG, J. Love wave propagation in layered magneto-electro-elastic structures with initial stress. Acta Mechanica, 192 (1), 169- 189 (2007) |
4 | QIAN, Z., JIN, F., WANG, Z., and KISHIMOTO, K. Love waves propagation in a piezoelectric layered structure with initial stresses. Acta Mechanica, 171 (1), 41- 57 (2004) |
5 | LIU, J. X., FANG, D. N., WEI, W. Y., and ZHAO, X. F. Love waves in layered piezoelectric/piezomagnetic structures. Journal of Sound and Vibration, 315 (1-2), 146- 156 (2008) |
6 | SUN, X. Y., CHEN, T. T., LIANG, Y., ZHANG, C., ZHAI, S. P., SUN, J. H., and WANG, W. Enhanced sensitivity of SAW based ammonia sensor employing GO-SnO2 nanocomposites. Sensors and Actuators B: Chemical, 375, 132884 (2023) |
7 | GURTIN, M. E., and MURDOCH, A. I. A continuum theory of elastic material surfaces. Archive for Rational Mechanics and Analysis, 57 (4), 291- 323 (1975) |
8 | ZHANG, C. L., CHEN, W. Q., and ZHANG, C. Z. On propagation of anti-plane shear waves in piezoelectric plates with surface effect. Physics Letters A, 376 (45), 3281- 3286 (2012) |
9 | WU, B., ZHANG, C. L., CHEN, W. Q., and ZHANG, C. Z. Surface effects on anti-plane shear waves propagating in magneto-electro-elastic nanoplates. Smart Materials and Structures, 24 (9), 095017 (2015) |
10 | SHODJA, H. M., GHAFAROLLAHI, A., and ENZEVAEE, C. Surface/interface effect on the scattering of Love waves by a nano-size surface-breaking crack within an ultra-thin layer bonded to an elastic half-space. International Journal of Solids and Structures, 108, 63- 73 (2017) |
11 | ENZEVAEE, C., and SHODJA, H. M. Crystallography and surface effects on the propagation of Love and Rayleigh surface waves in fcc semi-infinite solids. International Journal of Solids and Structures, 138, 109- 117 (2018) |
12 | ZHANG, S. J., GU, B., ZHANG, H. B., FENG, X. Q., PAN, R. Y., and HU, N. Propagation of Love waves with surface effects in an electrically-shorted piezoelectric nanofilm on a half-space elastic substrate. Ultrasonics, 66, 65- 71 (2016) |
13 | WANG, X., LI, P., and JIN, F. A generalized dynamic model of nanoscale surface acoustic wave sensors and its applications in Love wave propagation and shear-horizontal vibration. Applied Mathematical Modelling, 75, 101- 115 (2019) |
14 | KIEŁCZYŃSKI, P. Sensitivity of Love surface waves to mass loading. Sensors and Actuators A: Physical, 338, 113465 (2022) |
15 | YANG, W. J., LIANG, X., and SHEN, S. P. Love waves in layered flexoelectric structures. Philosophical Magazine, 97 (33), 3186- 3209 (2017) |
16 | ZHANG, S. J., GU, B., ZHANG, H. B., PAN, R. Y., ALAMUSI, , FENG, X. Q.. Frequency dispersion of Love waves in a piezoelectric nanofilm bonded on a semi-infinite elastic substrate. Chinese Journal of Mechanical Engineering, 28 (6), 1157- 1162 (2015) |
17 | ZHU, A. Y., and FAN, T. Y. Dynamic crack propagation in decagonal Al-Ni-Co quasicrystal. Journal of Physics: Condensed Matter, 20 (29), 295217 (2008) |
18 | LI, X. F. Elastohydrodynamic problems in quasicrystal elasticity theory and wave propagation. Philosophical Magazine, 93 (13), 1500- 1519 (2013) |
19 | ZHANG, B., YU, J. G., and ZHANG, X. M. Guided wave propagation in functionally graded one-dimensional hexagonal quasi-crystal plates. Journal of Mechanics, 36 (6), 773- 788 (2020) |
20 | ZHANG, B., YU, J. G., ZHANG, X. M., and ELMAIMOUNI, L. Guided wave propagating in a 1-D hexagonal piezoelectric quasi-crystal plate. Acta Mechanica, 232, 135- 151 (2021) |
21 | FENG, X., ZHANG, L. L., LI, Y., and GAO, Y. On the propagation of plane waves in cubic quasicrystal plates with surface effects. Physics Letters A, 473, 128807 (2023) |
22 | YANG, Y., and LI, X. F. Bending and free vibration of a circular magnetoelectroelastic plate with surface effects. International Journal of Mechanical Sciences, 157, 858- 871 (2019) |
23 | ZHOU, S. S., ZHANG, R. M., ZHOU, S. J., and LI, A. Q. Free vibration analysis of bilayered circular micro-plate including surface effects. Applied Mathematical Modelling, 70, 54- 66 (2019) |
24 | SHAAT, M., MAHMOUD, F. F., GAO, X. L., and FAHEEM, A. F. Size-dependent bending analysis of Kirchhoff nano-plates based on a modified couple-stress theory including surface effects. International Journal of Mechanical Sciences, 79, 31- 37 (2014) |
25 | DAI, S. X., and PARK, H. S. Surface effects on the piezoelectricity of ZnO nanowires. Journal of the Mechanics and Physics of Solids, 61 (2), 385- 397 (2013) |
26 | STAN, G., CIOBANU, C. V., PARTHANGAL, P. M., and COOK, R. F. Diameter-dependent radial and tangential elastic moduli of ZnO nanowires. Nano Letters, 7, 3691- 3697 (2007) |
27 | ZHANG, L., GUO, J. H., and XING, Y. M. Bending deformation of multilayered one-dimensional hexagonal piezoelectric quasicrystal nanoplates with nonlocal effect. International Journal of Solids and Structures, 132, 278- 302 (2018) |
28 | LI, Y., YANG, L. Z., ZHANG, L. L., and GAO, Y. Size-dependent effect on functionally graded multilayered two-dimensional quasicrystal nanoplates under patch/uniform loading. Acta Mechanica, 229 (8), 3501- 3515 (2018) |
29 | LI, Y., YANG, L. Z., GAO, Y., and PAN, E. Cylindrical bending analysis of a layered two-dimensional piezoelectric quasicrystal nanoplate. Journal of Intelligent Material Systems and Structures, 29 (12), 2660- 2676 (2018) |
30 | LI, Y. S., and XIAO, T. Free vibration of the one-dimensional piezoelectric quasicrystal microbeams based on modified couple stress theory. Applied Mathematical Modelling, 96, 733- 750 (2021) |
31 | GUO, J. H., CHEN, J. Y., and PAN, E. Free vibration of three-dimensional anisotropic layered composite nanoplates based on modified couple-stress theory. Physica E: Low-dimensional Systems and Nanostructures, 87, 98- 106 (2017) |
32 | LUBENSKY, T. C., RAMASWAMY, S., and TONER, J. Hydrodynamics of icosahedral quasicrystals. Physical Review B, 32 (11), 7444 (1985) |
33 | SOCOLAR, J. E., LUBENSKY, T., and STEINHARDT, P. J. Phonons, phasons, and dislocations in quasicrystals. Physical Review B, 34 (5), 3345 (1986) |
34 | BAK, P. Phenomenological theory of icosahedral incommensurate (quasiperiodic) order in Mn-Al alloys. Physical Review Letters, 54 (14), 1517- 1519 (1985) |
35 | FAN, T. Y. Mathematical Theory of Elasticity of Quasicrystals and Its Applications, Springer, Heidelberg (2011) |
36 | LI, X. Y., WANG, T., ZHENG, R. F., and KANG, G. Z. Fundamental thermo-electro-elastic solutions for 1D hexagonal QC. Zeitschrift für Angewandte Mathematik und Mechanik, 95 (5), 457- 468 (2015) |
37 | ZHANG, L. L., LIU, J. X., FANG, X. Q., and NIE, G. Q. Size-dependent dispersion characteristics in piezoelectric nanoplates with surface effects. Physica E: Low-dimensional Systems and Nanostructures, 57, 169- 174 (2014) |
[1] | Yunzhi HUANG, Wenqing ZHENG, Xiuhua CHEN, Miaolin FENG. Analytic solution of quasicrystal microsphere considering the thermoelectric effect and surface effect in the elastic matrix [J]. Applied Mathematics and Mechanics (English Edition), 2023, 44(8): 1331-1350. |
[2] | Zheng GONG, Yinxiao ZHANG, Ernian PAN, Chao ZHANG. Three-dimensional general magneto-electro-elastic finite element model for multiphysics nonlinear analysis of layered composites [J]. Applied Mathematics and Mechanics (English Edition), 2023, 44(1): 53-72. |
[3] | Zhaonian LI, Juan LIU, Biao HU, Yuxing WANG, Huoming SHEN. Wave propagation analysis of porous functionally graded piezoelectric nanoplates with a visco-Pasternak foundation [J]. Applied Mathematics and Mechanics (English Edition), 2023, 44(1): 35-52. |
[4] | Biao HU, Juan LIU, Yuxing WANG, Bo ZHANG, Jing WANG, Huoming SHEN. Study on wave dispersion characteristics of piezoelectric sandwich nanoplates considering surface effects [J]. Applied Mathematics and Mechanics (English Edition), 2022, 43(9): 1339-1354. |
[5] | Wenjun WANG, Feng JIN, Tianhu HE, Yongbin MA. Nonlinear magneto-mechanical-thermo coupling characteristic analysis for transport behaviors of carriers in composite multiferroic piezoelectric semiconductor nanoplates with surface effect [J]. Applied Mathematics and Mechanics (English Edition), 2022, 43(9): 1323-1338. |
[6] | Lele ZHANG, Jing ZHAO, Guoquan NIE, Jinxi LIU. Propagation of Rayleigh-type surface waves in a layered piezoelectric nanostructure with surface effects [J]. Applied Mathematics and Mechanics (English Edition), 2022, 43(3): 327-340. |
[7] | Ye XIAO, J. SHANG, L. Z. KOU, Chun LI. Surface deformation-dependent mechanical properties of bending nanowires: an ab initio core-shell model [J]. Applied Mathematics and Mechanics (English Edition), 2022, 43(2): 219-232. |
[8] | Shunzu ZHANG, Qianqian HU, Wenjuan ZHAO. Surface effect on band structure of magneto-elastic phononic crystal nanoplates subject to magnetic and stress loadings [J]. Applied Mathematics and Mechanics (English Edition), 2022, 43(2): 203-218. |
[9] | Zhina ZHAO, Junhong GUO. Surface effects on a mode-III reinforced nano-elliptical hole embedded in one-dimensional hexagonal piezoelectric quasicrystals [J]. Applied Mathematics and Mechanics (English Edition), 2021, 42(5): 625-640. |
[10] | Denghui QIAN. Electro-mechanical coupling wave propagating in a locally resonant piezoelectric/elastic phononic crystal nanobeam with surface effects [J]. Applied Mathematics and Mechanics (English Edition), 2020, 41(3): 425-438. |
[11] | H. S. ZHAO, Y. ZHANG, S. T. LIE. Frequency equations of nonlocal elastic micro/nanobeams with the consideration of the surface effects [J]. Applied Mathematics and Mechanics (English Edition), 2018, 39(8): 1089-1102. |
[12] | Yanmei YUE, Kaiyu XU, Xudong ZHANG, Wenjing WANG. Effect of surface stress and surface-induced stress on behavior of piezoelectric nanobeam [J]. Applied Mathematics and Mechanics (English Edition), 2018, 39(7): 953-966. |
[13] | Tuoya SUN, Junhong GUO, Xiaoyan ZHANG. Static deformation of a multilayered one-dimensional hexagonal quasicrystal plate with piezoelectric effect [J]. Applied Mathematics and Mechanics (English Edition), 2018, 39(3): 335-352. |
[14] | F. EBRAHIMI, M. R. BARATI. Dynamic modeling of preloaded size-dependent nano-crystalline nano-structures [J]. Applied Mathematics and Mechanics (English Edition), 2017, 38(12): 1753-1772. |
[15] | Zixing LU, Fan XIE, Qiang LIU, Zhenyu YANG. Surface effects on mechanical behavior of elastic nanoporous materials under high strain [J]. Applied Mathematics and Mechanics (English Edition), 2015, 36(7): 927-938. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||