압전적층판의 열-압전-탄성 동적 비선형 작동특성Thermopiezoelastic Nonlinear Dynamic Characteristics of Piezolaminated Plates

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Nonlinear dynamics of active piezolaminated plates are investigated with respect to the thermopiezoelastic behaviors. For largely deformed structures with small strain, the incremental total Lagrangian formulation is presented based on the virtual work principles. A multi field layer wise finite shell element is proposed for assuring high accuracy and non-linearity of displacement, electric and thermal fields. For dynamic consideration of thermopiezoelastic snap through phenomena, the implicit Newmark's scheme with the Newton-Raphson iteration is implemented for the transient response of various piezolaminated models with symmetric or eccentric active layers. The bifurcate thermal buckling of symmetric structural models is first investigated and the characteristics of piezoelectric active responses are studied for finding snap through piezoelectric potentials and the load path tracking map. The thermoelastic stable and unstable postbuckling, thermopiezoelastic snap through phenomena with several attractors are proved using the nonlinear time responses for various initial conditions and damping loss factors. Present results show that thermopiezoelastic snap through phenomena can result in the difficulty of buckling and postbuckling control of intelligent structures.
Publisher
한국소음진동공학회
Issue Date
2005-05-19
Language
KOR
Citation

한국소음진동공학회 2005학년도 춘계학술대회, pp.662 - 667

URI
http://hdl.handle.net/10203/151929
Appears in Collection
OSE-Conference Papers(학술회의논문)
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