4.5 Article

Global and Local Dynamics of a Bistable Asymmetric Composite Laminated Shell

Journal

SYMMETRY-BASEL
Volume 13, Issue 9, Pages -

Publisher

MDPI
DOI: 10.3390/sym13091690

Keywords

three equilibrium configurations; snap-through; global dynamics; local dynamics

Funding

  1. Beijing Natural Science Foundation [8202015]
  2. Open Research Fund Program of Beijing Key Laboratory of Performance Guarantee on Urban Rail Transit Vehicles [PGU2020K005]
  3. Young Teachers' Scientific Research Ability Improvement Program of Beijing University of Civil Engineering and Architecture [X21052]

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This paper presents the global and local dynamics of a bistable asymmetric composite laminated shell subjected to base excitation, discussing the effects of temperature difference, base excitation amplitude, and detuning parameters. The study reveals the occurrence of super-critical pitchfork bifurcation with temperature difference change, and the transition in dynamics with increasing excitation amplitude from local to global behavior.
As bistable composite laminated plate and shell structures are often exposed to dynamic environments in practical applications, the global and local dynamics of a bistable asymmetric composite laminated shell subjected to the base excitation is presented in this paper. Temperature difference, base excitation amplitude, and detuning parameters are discussed. With the change of temperature difference, the super-critical pitchfork bifurcation occurs. Three equilibrium solutions corresponding to three equilibrium configurations (two stable configurations and one unstable configuration) can be obtained. With the increase of excitation amplitude, local and global dynamics play a leading role successively. The global dynamics between the two stable configurations behave as the periodic vibration, the quasi-periodic vibration, the chaotic vibration and dynamic snap-through when the excitation amplitude is large enough. The local dynamics that are confined to a single stable configuration behave as 1:2 internal resonance, saturation and permeation when the excitation amplitude is small. Dynamic snap-through and large-amplitude vibrations with two potential wells for the global dynamics will lead to a broad application prospect of the bistable asymmetric composite laminated shell in energy harvesting devices.

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