Applied Mathematics and Mechanics (English Edition) ›› 2024, Vol. 45 ›› Issue (8): 1353-1370.doi: https://doi.org/10.1007/s10483-024-3136-7
• Articles • Previous Articles Next Articles
Lele REN1,*(), Wei ZHANG2,3, Yufei ZHANG2
Received:
2024-01-18
Online:
2024-08-03
Published:
2024-07-31
Contact:
Lele REN
E-mail:leleren0318@163.com
Supported by:
2010 MSC Number:
Lele REN, Wei ZHANG, Yufei ZHANG. Inter-well internal resonance analysis of rectangular asymmetric cross-ply bistable composite laminated cantilever shell under transverse foundation excitation. Applied Mathematics and Mechanics (English Edition), 2024, 45(8): 1353-1370.
Fig. 10
The bifurcation diagram and the maximum Lyapunov exponent diagram for the bistable cantilever shell when the excitation amplitude F1 changes: (a) bifurcation diagram of the upper stable-state on plane (F1, x1); (b) bifurcation diagram of the lower stable-state on plane (F1, x3); (c) the enlarged view of Region A; (d) the enlarged view of Region B; (e) the maximum Lyapunov exponent diagram (color online)"
1 |
REN, L. L., ZHANG, W., DONG, T., and ZHANG, Y. F. Snap-through behaviors and nonlinear vibrations of a bistable composite laminated cantilever shell: an experimental and numerical study. Applied Mathematics and Mechanics (English Edition), 45 (5), 779- 794 (2024)
doi: 10.1007/s10483-024-3111-7 |
2 | DING, S. Y., SUN, M., LI, Y., MA, W. L., and ZHANG, Z. Novel deployable panel structure integrated with thick origami and morphing bistable composite structures. Materials, 15 (5), 1942 (2022) |
3 | NAKHLA, S., and ELRUBY, A. Y. Applied finite element procedure for morphing wing design. Applied Composite Materials, 28 (4), 1193- 1220 (2021) |
4 | DONG, T., CHEN, X. H., and ZHANG, J. Study on dynamic snap-through and nonlinear vibrations of an energy harvester based on an asymmetric bistable composite laminated shell. Symmetry-Basel, 13 (12), 2405 (2021) |
5 | LI, H. T., DONG, B. J., CAO, F., QIN, W. Y., and TIAN, R. L. Homoclinic bifurcation for a bi-stable piezoelectric energy harvester subjected to galloping and base excitations. Applied Mathematical Modelling, 104, 228- 242 (2022) |
6 | LU, Z. Q., SHAO, D., FANG, Z. W., DING, H., and CHEN, L. Q. Integrated vibration isolation and energy harvesting via a bistable piezo-composite plate. Journal of Vibration and Control, 26 (9-10), 779- 789 (2020) |
7 | LU, Z. Q., YANG, T. J., BRENNAN, M. J., LIU, Z. G., and CHEN, L. Q. Experimental investigation of a two-stage nonlinear vibration isolation system with high-static-low-dynamic stiffness. Journal of Applied Mechanics-Transactions of the ASME, 84 (2), 021001 (2017) |
8 | HYER, M. W. Some observations on the cured shape of thin unsymmetric laminates. Journal of Composite Materials, 15 (2), 175- 194 (1981) |
9 | DANO, M. L., and HYER, M. W. Snap-through of unsymmetric fiber-reinforced composite laminates. International Journal of Solids and Structures, 39 (1), 175- 198 (2002) |
10 | SABERI, S., GHAYOUR, M., MIRDAMADI, H. R., and GHAMAMI, M. Free vibration analysis and mode management of bistable composite laminates using deep learning. Archive of Applied Mechanics, 91 (6), 2795- 2816 (2021) |
11 | ANILKUMAR, P. M., RAO, B. N., SCHEFFLER, S., WOLNIAK, M., ROLFES, R., HALDAR, A., and JANSEN, E. L. Refined semi-analytical framework to predict the natural vibration characteristics of bistable laminates. AIAA Journal, 61, 062289 (2023) |
12 | NICASSIO, F., LIONETTO, F., SCARSELLI, G., and MAFFEZZOLI, A. Time-dependent shape of bistable unsymmetric carbon fibers-epoxy thin laminates. Smart Materials and Structures, 30 (3), 035004 (2021) |
13 | ZHU, Y. T., and TAO, J. X. Thermally induced bistable functionally graded nanocomposite plate. Mathematical Problems in Engineering, 2022, 1185792 (2022) |
14 | DESHPANDE, V., MYERS, O., FADEL, G., and LI, S. Y. Transient deformation and curvature evolution during the snap-through of a bistable laminate under asymmetric point load. Composite Science and Technology, 211, 108871 (2021) |
15 | BILGEN, O., ARRIETA, A. F., FRISWELL, M. I., and HAGEDORN, P. Dynamic control of a bistable wing under aerodynamic loading. Smart Materials and Structures, 22 (2), 025020 (2013) |
16 | EMAM, S. A., HOBECK, J., and INMAN, D. J. Experimental investigation into the nonlinear dynamics of a bistable laminate. Nonlinear Dynamics, 95 (4), 3019- 3039 (2019) |
17 | HABIBZADEH, N., TIKANI, R., ZIAEI-RAD, S., and TAKI, M. S. Static and dynamic analysis of a bistable plate under nonlinear magnetic force. Journal of Vibration and Control, 28 (7-8), 745- 757 (2020) |
18 | HAO, Y. X., BAI, C. P., ZHANG, W., LIU, L. T., and YANG, S. W. Intrawell and interwell oscillations for bi-stable cross-ply laminates actuated by MFC under oscillating impulse voltages. International Journal of Non-Linear Mechanics, 143, 104025 (2022) |
19 | HAO, Y. X., ZHOU, W. B., ZHANG, W., YANG, S. W., and CAO, Y. T. Dynamic snap-through of bi-stable laminates with simply supported at four corners under impact loads. Mechanics Based Design of Structures and Machines, 52 (3), 1584- 1603 (2024) |
20 | ANILKUMAR, P. M., SCHEFFLER, S., HALDAR, A., BROD, M., RAO, B. N., JANSEN, E. L., and ROLFES, R. Nonlinear dynamic modeling of bistable variable stiffness composite laminates. Journal of Sound and Vibration, 545, 117417 (2023) |
21 | REN, L. L., ZHANG, W., and ZHANG, Y. F. Dynamic snap-through and nonlinear vibrations of bistable asymmetric cross-ply composite laminated cantilever shell under external excitation. Mechanical Systems and Signal Processing, 195, 110193 (2023) |
22 | MUKHERJEE, A., FRISWELL, M. I., ALI, S. F., and AROCKIARAJAN, A. Modeling and design of a class of hybrid bistable symmetric laminates with cantilever boundary configuration. Composite Structures, 239, 112019 (2020) |
23 | MUKHERJEE, A., ALI, S. F., and AROCKIARAJAN, A. Hybrid bistable composite laminates for structural assemblies: a numerical and experimental study. Composite Structures, 260, 113467 (2021) |
24 | HIJAZI, S., and EMAM, S. An investigation into the static configurations and snapthrough response of clamped hybrid bistable symmetric laminates. Composite Structures, 312, 116880 (2023) |
25 | LIU, X. H., LI, M., and DAI, F. H. Wind-induced vibration behavior of bistable hybrid symmetric laminate. Composite Structures, 301, 116126 (2022) |
26 | CHEN, L. Q., and FAN, Y. M. Internal resonance vibration-based energy harvesting. Nonlinear Dynamics, 111 (13), 11703- 11727 (2023) |
27 | LIU, J., LU, Y. L., WANG, Z., LI, S., and WU, Y. P. Three frequency up-converting piezoelectric energy harvesters caused by internal resonance mechanism: a narrative review. Micromachines, 13 (2), 210 (2022) |
28 | ASADI, K., YU, J., and CHO, H. N. Nonlinear couplings and energy transfers in micro- and nano-mechanical resonators: intermodal coupling, internal resonance and synchronization. Philosophical Transactions of the Royal Society A: Mathematical Physical and Engineering Sciences, 376 (2127), 20170141 (2018) |
29 | HUANG, W. B., CHEN, Z. W., LIN, W. R., WANG, S. J., and XIE, Z. Q. A novel two degree of freedom single magnet bistable energy harvester based on internal resonance. Smart Materials and Structures, 32 (1), 015012 (2023) |
30 | ZHANG, J. Y., LI, X. F., LI, R. F., DAI, L., WANG, W., and YANG, K. Internal resonance of a two-degree-of-freedom tuned bistable electromagnetic actuator. Chaos Solitons & Fractals, 143, 110612 (2021) |
31 | MAO, X. Y., DING, H., and CHEN, L. Q. Forced vibration of axially moving beam with internal resonance in the supercritical regime. International Journal of Mechanical Sciences, 131, 81- 94 (2017) |
32 | ZHANG, T. Y., GUO, C. W., JIANG, Z. D., and WEI, X. Y. Internal resonance between the extensional and flexural modes in micromechanical resonators. Journal of Applied Physics, 126 (16), 164506 (2019) |
33 | CHEN, J., HU, W. H., and LI, Q. S. Nonlinear dynamics of a foldable multibeam structure with one to two internal resonances. International Journal of Mechanical Sciences, 150, 369- 378 (2019) |
34 | NIU, Y., WU, M. Q., YAO, M. H., and WU, Q. L. Dynamic instability and internal resonance of rotating pretwisted composite airfoil blades. Chaos Solitons & Fractals, 165 (2), 112835 (2022) |
35 | TENG, M. W., and WANG, Y. Q. Spin-induced internal resonance in circular cylindrical shells. International Journal of Non-Linear Mechanics, 147, 104234 (2022) |
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