Applied Mathematics and Mechanics (English Edition) ›› 2022, Vol. 43 ›› Issue (10): 1543-1554.doi: https://doi.org/10.1007/s10483-022-2904-9
• Articles • Previous Articles Next Articles
Yunfei LIU, Jun WANG, Jiaxin HU, Zhaoye QIN, Fulei CHU
Received:
2022-04-09
Revised:
2022-07-13
Published:
2022-10-25
Contact:
Zhaoye QIN, E-mail: qinzy@mail.tsinghua.edu.cn
Supported by:
2010 MSC Number:
Yunfei LIU, Jun WANG, Jiaxin HU, Zhaoye QIN, Fulei CHU. Multiple internal resonances of rotating composite cylindrical shells under varying temperature fields. Applied Mathematics and Mechanics (English Edition), 2022, 43(10): 1543-1554.
[1] BEHDINAN, K. and MORADI-DASTJERDI, R. Heat transfer behavior of graphene-reinforced nanocomposite sandwich cylinders. Advanced Multifunctional Lightweight Aerostructures:Design, Development, and Implementation, ASME-Wiley, eBooks, 25-42(2021) [2] MORADI-DASTJERDI, R. and BEHDINAN, K. Dynamic performance of piezoelectric energy harvesters with a multifunctional nanocomposite substrate. Applied Energy, 293, 116947(2021) [3] LIU, Y., QIN, Z. Y., and CHU, F. L. Analytical study of the impact response of shear deformable sandwich cylindrical shell with a functionally graded porous core. Mechanics of Advanced Materials and Structures, 29, 1338-1347(2022) [4] GUAN, X., ZHONG, R., QIN, B., WANG, Q., and SHUAI, C. A unified prediction solution for vibro-acoustic analysis of composite laminated elliptical shells immersed in air. Journal of Central South University, 28, 429-444(2021) [5] LIU, Y. F., HU, W. Y., ZHU, R. Z., SAFAEI, B., QIN, Z. Y., and CHU, F. L. Dynamic responses of corrugated cylindrical shells subjected to nonlinear low-velocity impact. Aerospace Science and Technology, 121, 107321(2022) [6] LIANG, F., LI, Z., YANG, X. D., ZHANG, W., and YANG, T. Z. Coupled bending-bending-axialtorsional vibrations of rotating blades. Acta Mechanica Solida Sinica, 32, 326-338(2019) [7] YANG, J. H., YANG, X. D., QIAN, Y. J., and ZHANG, W. A novel type of bi-gyroscopic system undergoing both rotating and spinning motions. Journal of Vibration and Acoustics, 143, 034502(2021) [8] LI, L., LUO, Z., HE, F. X., SUN, K., and YAN, X. L. An improved partial similitude method for dynamic characteristic of rotor systems based on Levenberg-Marquardt method. Mechanical Systems and Signal Processing, 165, 108405(2022) [9] WANG, J., LIU, Y. F., QIN, Z. Y., MA, L., and CHU, F. L. Dynamic performance of a novel integral magnetorheological damper-rotor system. Mechanical Systems and Signal Processing, 172, 109004(2022) [10] SAFAEI, B., SAHMANI, S., and ASL, H. T. Quasi-3D nonlinear flexural response of isogeometric functionally graded CNT-reinforced plates with various shapes with variable thicknesses. Mechanics Based Design of Structures and Machines (2021) https://doi.org/10.1080/15397734.2021.1999264 [11] ZENG, J., MA, H., YU, K., XU, Z. T., and WEN, B. C. Coupled flapwise-chordwise-axialtorsional dynamic responses of rotating pre-twisted and inclined cantilever beams subject to the base excitation. Applied Mathematics and Mechanics (English Edition), 40(8), 1053-1082(2019) https://doi.org/10.1007/s10483-019-2506-6 [12] KARROUBI, R. and IRANI-RAHAGHI, M. Rotating sandwich cylindrical shells with an FGM core and two FGPM layers:free vibration analysis. Applied Mathematics and Mechanics (English Edition), 40(4), 563-578(2019) https://doi.org/10.1007/s10483-019-2469-8 [13] SUN, S. P. and LIU, L. Multiple internal resonances in nonlinear vibrations of rotating thin-walled cylindrical shells. Journal of Sound and Vibration, 510, 116313(2021) [14] LIU, Y. F., QIN, Z. Y., and CHU, F. L. Nonlinear dynamic responses of sandwich functionally graded porous cylindrical shells embedded in elastic media under 1:1 internal resonance. Applied Mathematics and Mechanics (English Edition), 42(6), 805-818(2021) https://doi.org/10.1007/s10483-021-2740-7 [15] DAI, Q. Y., LIU, Y. F., QIN, Z. Y., and CHU, F. L. Nonlinear damping and forced response of laminated composite cylindrical shells with inherent material damping. International Journal of Applied Mechanics, 13, 2150060(2021) [16] LU, Z. Q., ZHANG, K. K., DING, H., and CHEN, L. Q. Nonlinear vibration effects on the fatigue life of fluid-conveying pipes composed of axially functionally graded materials. Nonlinear Dynamics, 100, 1091-1104(2020) [17] YANG, S. W., HAO, Y. X., ZHANG, W., YANG, L., and LIU, L. T. Nonlinear vibration of functionally graded graphene platelet-reinforced composite truncated conical shell using first-order shear deformation theory. Applied Mathematics and Mechanics (English Edition), 42(7), 981-998(2021) https://doi.org/10.1007/s10483-021-2747-9 [18] DAI, Q. Y., LIU, Y. F., QIN, Z. Y., and CHU, F. L. Damping and frequency response characteristics of functionally graded fiber-reinforced composite cylindrical shells. International Journal of Structural Stability and Dynamics, 22, 2250107(2022) [19] HAO, R. B., LU, Z. Q., DING, H., and CHEN, L. Q. A nonlinear vibration isolator supported on a flexible plate:analysis and experiment. Nonlinear Dynamics, 108, 941-958(2022) [20] WANG, J., LIU, Y. F., QIN, Z. Y., MA, L., and CHU, F. L. Nonlinear characteristic investigation of magnetorheological damper-rotor system with local nonlinearity. Chinese Journal of Aeronautics (2022) https://doi.org/10.1016/j.cja.2022.06.001 [21] RAFIEE, M., NITZSCHE, F., and LABROSSE, M. Rotating nanocomposite thin-walled beams undergoing large deformation. Composite Structures, 150, 191-199(2016) [22] GU, X. J., ZHANG, W., and ZHANG, Y. F. Nonlinear vibrations of rotating pretwisted composite blade reinforced by functionally graded graphene platelets under combined aerodynamic load and airflow in tip clearance. Nonlinear Dynamics, 105, 1503-1532(2021) [23] LI, C. F., LI, P. Y., ZHONG, B. F., and MIAO, X. Y. Large-amplitude vibrations of thin-walled rotating laminated composite cylindrical shell with arbitrary boundary conditions. Thin-Walled Structures, 156, 106966(2020) [24] KHOSRAVI, S., ARVIN, H., and KIANI, Y. Vibration analysis of rotating composite beams reinforced with carbon nanotubes in thermal environment. International Journal of Mechanical Sciences, 164, 105187(2019) [25] LI, Z., ZHONG, R., WANG, Q. S., QIN, B., and YU, H. L. The thermal vibration characteristics of the functionally graded porous stepped cylindrical shell by using characteristic orthogonal polynomials. International Journal of Mechanical Sciences, 182, 105779(2020) [26] LIU, T., ZHANG, W., MAO, J. J., and ZHENG, Y. Nonlinear breathing vibrations of eccentric rotating composite laminated circular cylindrical shell subjected to temperature, rotating speed and external excitations. Mechanical Systems and Signal Processing, 127, 463-498(2019) [27] LIU, Y. F., QIN, Z. Y., and CHU, F. L. Nonlinear forced vibrations of FGM sandwich cylindrical shells with porosities on an elastic substrate. Nonlinear Dynamics, 104, 1007-1021(2021) [28] LIU, Y. F., QIN, Z. Y., and CHU, F. L. Nonlinear forced vibrations of rotating cylindrical shells under multi-harmonic excitations in thermal environment. Nonlinear Dynamics, 108, 2977-2991(2022) [29] AMABILI, M. Nonlinear Mechanics of Shells and Plates in Composite, Soft and Biological Materials, Cambridge University Press, New York (2018) [30] LIU, Y. F., QIN, Z. Y., and CHU, F. L. Investigation of magneto-electro-thermo-mechanical loads on nonlinear forced vibrations of composite cylindrical shells. Communications in Nonlinear Science and Numerical Simulation, 107, 106146(2022) [31] LIU, Y. F., QIN, Z. Y., and CHU, F. L. Nonlinear forced vibrations of functionally graded piezoelectric cylindrical shells under electric-thermo-mechanical loads. International Journal of Mechanical Sciences, 201, 106474(2021) [32] DHOOGE, A., GOVAERTS, W., KUZNETSOV, Y. A., MEIJER, H. G. E., and SAUTOIS, B. New features of the software MatCont for bifurcation analysis of dynamical systems. Mathematical and Computer Modelling of Dynamical Systems, 14, 147-175(2008) [33] CHEN, Y., ZHAO, H. B., SHEN, Z. P., GRIEGER, I., and KRÖPLIN, B. H. Vibrations of high speed rotating shells with calculations for cylindrical shells. Journal of Sound and Vibration, 160, 137-160(1993) [34] AMABILI, M., PELLICANO, F., and PAIDOUSSIS, M. P. Nonlinear vibrations of simply supported, circular cylindrical shells, coupled to quiescent fluid. Journal of Fluids and Structures, 12, 883-918(1998) |
[1] | Hongyan CHEN, Youcheng ZENG, Hu DING, Siukai LAI, Liqun CHEN. Dynamics and vibration reduction performance of asymmetric tristable nonlinear energy sink [J]. Applied Mathematics and Mechanics (English Edition), 2024, 45(3): 389-406. |
[2] | Xiaodong GUO, Zhu SU, Lifeng WANG. Dynamic characteristics of multi-span spinning beams with elastic constraints under an axial compressive force [J]. Applied Mathematics and Mechanics (English Edition), 2024, 45(2): 295-310. |
[3] | Haiyang WU, Jiangfeng LOU, Biao ZHANG, Yuntong DAI, Kai LI. Stability analysis of a liquid crystal elastomer self-oscillator under a linear temperature field [J]. Applied Mathematics and Mechanics (English Edition), 2024, 45(2): 337-354. |
[4] | Ying MENG, Xiaoye MAO, Hu DING, Liqun CHEN. Nonlinear vibrations of a composite circular plate with a rigid body [J]. Applied Mathematics and Mechanics (English Edition), 2023, 44(6): 857-876. |
[5] | Wenhao YUAN, Haitao LIAO, Ruxin GAO, Fenglian LI. Vibration and sound transmission loss characteristics of porous foam functionally graded sandwich panels in thermal environment [J]. Applied Mathematics and Mechanics (English Edition), 2023, 44(6): 897-916. |
[6] | Lei LI, Zhong LUO, Fengxia HE, Jilai ZHOU, Hui MA, Hui LI. Experimental and simulation studies on similitude design method for shock responses of beam-plate coupled structure [J]. Applied Mathematics and Mechanics (English Edition), 2023, 44(6): 917-930. |
[7] | A. BAKHTIYARI, M. BAGHANI, S. SOHRABPOUR. An investigation on multilayer shape memory polymers under finite bending through nonlinear thermo-visco-hyperelasticity [J]. Applied Mathematics and Mechanics (English Edition), 2023, 44(1): 73-88. |
[8] | 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. |
[9] | Fan YANG, Zhaoyang MA, Xingming GUO. Bandgap characteristics of the two-dimensional missing rib lattice structure [J]. Applied Mathematics and Mechanics (English Edition), 2022, 43(11): 1631-1640. |
[10] | Wenzheng QUE, Xiaodong YANG, Wei ZHANG. Tunable low frequency band gaps and sound transmission loss of a lever-type metamaterial plate [J]. Applied Mathematics and Mechanics (English Edition), 2022, 43(8): 1145-1158. |
[11] | Bin ZHANG, Hongsheng LIU, Shengxi ZHOU, Jun GAO. A review of nonlinear piezoelectric energy harvesting interface circuits in discrete components [J]. Applied Mathematics and Mechanics (English Edition), 2022, 43(7): 1001-1026. |
[12] | Xiaoye MAO, Mengmeng YIN, Hu DING, Xiaofeng GENG, Yongjun SHEN, Liqun CHEN. Modeling, analysis, and simulation of X-shape quasi-zero-stiffness-roller vibration isolators [J]. Applied Mathematics and Mechanics (English Edition), 2022, 43(7): 1027-1044. |
[13] | Bo YAN, Ning YU, Chuanyu WU. A state-of-the-art review on low-frequency nonlinear vibration isolation with electromagnetic mechanisms [J]. Applied Mathematics and Mechanics (English Edition), 2022, 43(7): 1045-1062. |
[14] | Huliang DAI, Yixiang HE, Kun ZHOU, Zerui PENG, Lin WANG, P. HAGEDORN. Utilization of nonlinear vibrations of soft pipe conveying fluid for driving underwater bio-inspired robot [J]. Applied Mathematics and Mechanics (English Edition), 2022, 43(7): 1109-1124. |
[15] | Kai WANG, Jiaxi ZHOU, Dongguo TAN, Zeyi LI, Qida LIN, Daolin XU. A brief review of metamaterials for opening low-frequency band gaps [J]. Applied Mathematics and Mechanics (English Edition), 2022, 43(7): 1125-1144. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||