Applied Mathematics and Mechanics (English Edition) ›› 2024, Vol. 45 ›› Issue (4): 581-602.doi: https://doi.org/10.1007/s10483-024-3105-6
• Articles • Next Articles
Meiqi WU1,2, Peng LV1, Hongyuan LI1, Jiale YAN1, Huiling DUAN1,*(), Wei ZHANG3
Received:
2023-11-02
Online:
2024-04-01
Published:
2024-04-08
Contact:
Huiling DUAN
E-mail:hlduan@pku.edu.cn
Supported by:
2010 MSC Number:
Meiqi WU, Peng LV, Hongyuan LI, Jiale YAN, Huiling DUAN, Wei ZHANG. Theoretical and experimental investigation of the resonance responses and chaotic dynamics of a bistable laminated composite shell in the dynamic snap-through mode. Applied Mathematics and Mechanics (English Edition), 2024, 45(4): 581-602.
Fig. 3
Effects of structural parameters on the first six linear frequencies for the bistable laminated shell: (a) frequency curves for the 4-layer bistable shell, (b) frequency curves for the 6-layer bistable shell, and (c) frequency curves for the 8-layer bistable shell. (d) Effects of the length-to-thickness ratio on the 4th- and 5th-order linear frequencies (color online)"
Fig. 9
Quasi-periodic motion of the bistable laminated composite shell when F=18: (a) phase portrait and (b) time history of the transverse vibration for the 4th-order mode; (c) phase portrait and (d) time history of the transverse vibration for the 5th-order mode; (e) coupling between the 4th- and 5th-order modes; (f) Poincare map (color online)"
Fig. 10
Chaotic motion of the bistable laminated composite shell when F=41: (a) phase portrait and (b) time history of the transverse vibration for the 4th-order mode; (c) phase portrait and (d) time history of the transverse vibration for the 5th-order mode; (e) coupling between the 4th- and 5th-order modes; (f) Poincare map (color online)"
1 | HYER, M. W. Some observations on the cured shape of thin unsymmetric laminates. Journal of Composite Materials, 15 (2), 175- 194 (1981) |
2 | HYER, M. W. The room-temperature shapes of four-layer unsymmetric cross-ply laminates. Journal of Composite Materials, 16 (4), 318- 340 (1982) |
3 | JUN, W. J., and HONG, C. S. Effect of residual shear strain on the cured shape of unsymmetric cross-ply thin laminates. Composites Science & Technology, 38 (1), 55- 67 (1990) |
4 | BRAMPTON, C. J., BETTS, D. N., BOWEN, C. R., and KIM, H. A. Sensitivity of bistable laminates to uncertainties in material properties, 2013, geometry and environmental conditions. Composite Structures, 102, 276- 286 (2013) |
5 | 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) |
6 | CANTERA, M., ROMERA, J., ADARRAGA, I., and MUJIKA, F. Modelling and testing of the snap-through process of bistable cross-ply composites. Composite Structures, 120, 41- 52 (2015) |
7 | DIACONU, C. G., WEAVER, P. M., and ARRIETA, A. F. Dynamic analysis of bi-stable composite plates. Journal of Sound and Vibration, 322 (4-5), 987- 1004 (2009) |
8 | DAYNES, S., WEAVER, P., and POTTER, K. Aeroelastic study of bistable composite airfoils. Journal of Aircraft, 46 (6), 2169- 2174 (2009) |
9 | GATTO, A., MATTIONI, F., and FRISWELL, M. Experimental investigation of bistable winglets to enhance aircraft wing lift takeoff capability. Journal of Aircraft, 46 (2), 647- 655 (2009) |
10 | BETTS, D. N., KIM, H. A., BOWEN, C. R., and INMAN, D. Optimal configurations of bistable piezo-composites for energy harvesting. Applied Physics Letters, 100 (11), 114104 (2012) |
11 | PAN, D., MA, B., and DAI, F. Experimental investigation of broadband energy harvesting of a bi-stable composite piezoelectric plate. Smart Materials and Structures, 26 (3), 035045 (2017) |
12 | HUANG, J., ZHANG, Q., SCARPA, F., LIU, Y., and LENG, J. Shape memory polymer-based hybrid honeycomb structures with zero Poisson's ratio and variable stiffness. Composite Structures, 179, 437- 443 (2017) |
13 | SHAN, S., KANG, S. H., RANEY, J. R., WANG, P., FANG, L., CANDIDO, F., LEWIS, J. A., and BERTOLDI, K. Multistable architected materials for trapping elastic strain energy. Advanced Materials, 27 (29), 4296- 4301 (2015) |
14 | SUN, J., TIGHE, B., and ZHAO, J. Tuning the energy landscape of soft robots for fast and strong motion. 2020 IEEE International Conference on Robotics and Automation (ICRA), 10082–10088 (2020) |
15 | ZHANG, Z., NI, X., WU, H., SUN, M., BAO, G., WU, H., and JIANG, S. Pneumatically actuated soft gripper with bistable structures. Soft Robotics, 9 (1), 57- 71 (2021) |
16 | ZHANG, Z., CHEN, D., WU, H., BAO, Y., and CHAI, G. Non-contact magnetic driving bioinspired venus flytrap robot based on bistable anti-symmetric CFRP structure. Composite Structure, 135, 17- 22 (2016) |
17 | WANG, D. A., CHEN, J. H., and PHAM, H. T. A constant-force bistable micromechanism. Sensors & Actuators A-Physical, 189, 481- 487 (2013) |
18 | PUTHANVEETIL, S., LIU, W. C., RILEY, K. S., ARRIETA, A. F., and LE FERRAND, H. Programmable multistability for 3D printed reinforced multifunctional composites with reversible shape change. Composites Science and Technology, 217, 109097 (2022) |
19 | ARRIETA, A. F., NEILD, S. A., and WAGG, D. J. Nonlinear dynamic response and modeling of a bistable composite plate for applications to adaptive structures. Nonlinear Dynamics, 58, 259- 272 (2009) |
20 | ARRIETA, A. F., NEILD, S. A., and WAGG, D. J. On the cross-well dynamics of a bi-stable composite plate. Journal of Sound and Vibration, 330 (14), 3424- 3441 (2011) |
21 | ARRIETA, A. F., SPELSBERG-KORSPETER, G., HAGEDORN, P., NEILD, S. A., and WAGG, D. J. Low order model for the dynamics of bi-stable composite plates. Journal of Intelligent Material Systems and Structures, 22 (17), 2025- 2043 (2011) |
22 | LI, H., DAI, F., and DU, S. Broadband energy harvesting by exploiting nonlinear oscillations around the second vibration mode of a rectangular piezoelectric bistable laminate. Smart Materials and Structures, 24 (4), 045024 (2015) |
23 | PAN, D., JIANG, W., and DAI, F. Dynamic analysis of bi-stable hybrid symmetric laminate. Composite Structures, 225, 111158 (2019) |
24 | WU, Z., LI, H., and FRISWELL, M. I. Advanced nonlinear dynamic modelling of bi-stable composite plates. Composite Structures, 201, 582- 596 (2018) |
25 | EMAM, S. A., HOBECK, J., and INMAN, D. J. Experimental investigation into the nonlinear dynamics of a bistable laminate. Nonlinear dynamics, 95, 3019- 3039 (2019) |
26 | MITURA, A., BRUNETTI, M., KLODA, L., ROMEO, F., and WARMINSKI, J. Experimental nonlinear dynamic regimes for energy harvesting from cantilever bistable shells. Mechanical Systems and Signal Processing, 206, 110890 (2024) |
27 | ZHANG, W., LIU, Y., and WU, M. Theory and experiment of nonlinear vibrations and dynamic snap-through phenomena for bi-stable asymmetric laminated composite square panels under foundation excitation. Composite Structure, 225, 111140 (2019) |
28 | WU, M. Q., ZHANG, W., and NIU, Y. Experimental and numerical studies on nonlinear vibrations and dynamic snap-through phenomena of bistable asymmetric composite laminated shallow shell under center foundation excitation. European Journal of Mechanics A-Solids, 89, 104303 (2021) |
29 | WU, M., ZHANG, W., and CHRONOPOULOS, D. Nonlinear vibrations and dynamic snap-through behaviors of four-corner simply supported bi-stable asymmetric laminated composite square shell. Mechanical Systems and Signal Processing, 173, 109023 (2022) |
30 | BRUNETTI, M., MITURA, A., ROMEO, F., and WARMINSKI, J. Nonlinear dynamics of bistable composite cantilever shells: an experimental and modelling study. Journal of Sound and Vibration, 526, 116779 (2022) |
31 | NAYFEH, A. H., and MOOK, D. T. Nonlinear Oscillations, Oxford University Press, Oxford (1981) |
32 | ABE, A., KOBAYASHI, Y., and YAMADA, G. Two-mode response of simply supported, rectangular laminated plates. International Journal of Non-Linear Mechanics, 33 (4),675- 690 (1998) |
33 | PELLICANO, F., and AVRAMOV, K. Linear and nonlinear dynamics of a circular cylindrical shell connected to a rigid disk. Communications in Nonlinear Science and Numerical Simulation, 12 (4), 496- 518 (2007) |
34 | LIU, Y., and CHU, F. Nonlinear vibrations of rotating thin circular cylindrical shell. Nonlinear Dynamics, 67, 1467- 1479 (2011) |
35 | CHEN, J., ZHANG, W., GUO, X., and SUN, M. Theoretical and experimental studies on nonlinear oscillations of symmetric cross-ply composite laminated plates. Nonlinear Dynamics, 73, 1697- 1714 (2013) |
36 | TENG, M. W., and WANG, Y. Q. Nonlinear forced vibration of simply supported functionally graded porous nanocomposite thin plates reinforced with graphene platelets. Thin-Walled Structures, 164, 107799 (2021) |
37 | AMABILI, M. Internal resonances in non-linear vibrations of a laminated circular cylindrical shell. Nonlinear Dynamics, 69, 755- 770 (2012) |
38 | NIU, Y., WU, M., YAO, M., and WU, Q. Dynamic instability and internal resonance of rotating pretwisted composite airfoil blades. Chaos Solitons & Fractals, 165, 112835 (2022) |
39 | NIU, Y., YAO, M., and WU, Q. Nonlinear vibrations of functionally graded graphene reinforced composite cylindrical panels. Applied Mathematical Modelling, 101, 1- 18 (2022) |
40 | ZHANG, W., MA, W., ZHANG, Y., and LIU, Y. Double excitation multi-stability and multi-pulse chaotic vibrations of a bistable asymmetric laminated composite square panels under foundation force. Chaos, 30 (8), 083105 (2020) |
41 | DING, H., JI, J., and CHEN, L. Q. Nonlinear vibration isolation for fluid-conveying pipes using quasi-zero stiffness characteristics. Mechanical Systems and Signal Processing, 121, 675- 688 (2019) |
42 | DING, H., and CHEN, L. Q. Nonlinear vibration of a slightly curved beam with quasi-zero-stiffness isolators. Nonlinear Dynamics, 95 (3), 2367- 2382 (2019) |
43 | YAO, M., LIU, P., MA, L., WANG, H., and ZHANG, W. Experimental study on broadband bistable energy harvester with L-shaped piezoelectric cantilever beam. Acta Mechanica Sinica, 36, 557- 577 (2020) |
44 | YAO, M., WANG, X., WU, Q., NIU, Y., and WANG, S. Dynamic analysis and design of power management circuit of the nonlinear electromagnetic energy harvesting device for the automobile suspension. Mechanical Systems and Signal Processing, 170, 108831 (2022) |
45 | AWREJCEWICZ, J., SYPNIEWSKA-KAMIŃSKA, G., and MAZUR, O. Analysing regular nonlinear vibrations of nano/micro plates based on the nonlocal theory and combination of reduced order modelling and multiple scale method. Mechanical Systems and Signal Processing, 163, 108132 (2022) |
46 | QATU, M. S. Vibration of Laminated Shells and Plates, Elsevier, Amsterdam (2004) |
47 | PARKER, T. S. and CHUA, L. Practical Numerical Algorithms for Chaotic Systems, Springer-Verlag, New York (2012) |
48 | WANG, Y. Q., WAN, Y. H., and ZHANG, Y. F. Vibrations of longitudinally traveling functionally graded material plates with porosities. European Journal of Mechanics A-Solids, 66, 55- 68 (2017) |
[1] | Peng WANG, Shaopu YANG, Yongqiang LIU, Pengfei LIU, Xing ZHANG, Yiwei ZHAO. Research on hunting stability and bifurcation characteristics of nonlinear stochastic wheelset system [J]. Applied Mathematics and Mechanics (English Edition), 2023, 44(3): 431-446. |
[2] | A. MOSLEMI, M. R. HOMAEINEZHAD. Effects of viscoelasticity on the stability and bifurcations of nonlinear energy sinks [J]. Applied Mathematics and Mechanics (English Edition), 2023, 44(1): 141-158. |
[3] | Sainan WANG, Shu ZHANG, Jian XU. Suppression of oscillatory congestion via trunk link bandwidth and control gain in star network [J]. Applied Mathematics and Mechanics (English Edition), 2019, 40(1): 25-48. |
[4] | Yan ZHOU, Wei ZHANG. Double Hopf bifurcation of composite laminated piezoelectric plate subjected to external and internal excitations [J]. Applied Mathematics and Mechanics (English Edition), 2017, 38(5): 689-706. |
[5] | Shuang-bao LI;Wei ZHANG . Global bifurcations and multi-pulse chaotic dynamics of rectangular thin plate with one-to-one internal resonance [J]. Applied Mathematics and Mechanics (English Edition), 2012, 33(9): 1115-1128. |
[6] | GUO Gai-Hui;WU Jian-Hua;REN Xiao-Hong. Hopf bifurcation in general Brusselator system with diffusion [J]. Applied Mathematics and Mechanics (English Edition), 2011, 32(9): 1177-1186. |
[7] | XU Chang-Jin;TANG Xian-Hua;LIAO Mao-Xin. Local Hopf bifurcation and global existence of periodic solutions in TCP system [J]. Applied Mathematics and Mechanics (English Edition), 2010, 31(6): 775-786. |
[8] | LI Bo;WANG Ming-xin . Diffusion-driven instability and Hopf bifurcation in Brusselator system [J]. Applied Mathematics and Mechanics (English Edition), 2008, 29(6): 825-832 . |
[9] | LU Tie-jun;WANG Mei-juan;LIU Yan. Global stability analysis of a ratio-dependent predator-prey system [J]. Applied Mathematics and Mechanics (English Edition), 2008, 29(4): 495-500 . |
[10] | ZHANG Ji-xiang;LI Ji-bin. BIFURCATIONS OF TRAVELLING WAVE SOLUTIONS FOR A COUPLED NONLINEAR WAVE SYSTEM [J]. Applied Mathematics and Mechanics (English Edition), 2005, 26(7): 838-847 . |
[11] | WANG Hong-li;FENG Jian-feng;SHEN Fei;SUN Jing. STABILITY AND BIFURCATION BEHAVIORS ANALYSIS IN A NONLINEAR HARMFUL ALGAL DYNAMICAL MODEL [J]. Applied Mathematics and Mechanics (English Edition), 2005, 26(6): 729-734 . |
[12] | WEI Jun-jie;ZHANG Chun-rui;LI Xiu-ling. BIFURCATION IN A TWO-DIMENSIONAL NEURAL NETWORK MODEL WITH DELAY [J]. Applied Mathematics and Mechanics (English Edition), 2005, 26(2): 210-217 . |
[13] | DING Qian;CHEN Yu-shu. BIFURCATION OF A SHAFT WITH HYSTERETIC-TYPE INTERNAL FRICTION FORCE OF MATERIAL [J]. Applied Mathematics and Mechanics (English Edition), 2003, 24(6): 638-645. |
[14] | ZHANG Neng-hui;CHENG Chang-jun. TWO-MODE GALERKIN APPROACH IN DYNAMIC STABILITY ANALYSIS OF VISCOELASTIC PLATES [J]. Applied Mathematics and Mechanics (English Edition), 2003, 24(3): 247-255. |
[15] | Guo Ruihai;Yuan Xiaofeng . HOPF BIFURCATION FOR A ECOLOGICAL MATHEMATICAL MODEL ON MICROBE POPULATIONS [J]. Applied Mathematics and Mechanics (English Edition), 2000, 21(7): 767-774. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||