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Dynamic behaviour of a thin laminated plate embedded with auxetic layers subject to in-plane excitation
Affiliation:1. Department of Mechanical and Industrial Engineering, New Jersey Institute of Technology, 200 Central Avenue, Newark, NJ, USA;2. Department of Mathematical Sciences, New Jersey Institute of Technology, Newark, NJ, USA;1. LMR Université François-Rabelais 7 Avenue Marcel Dassault 37004 Tours, France;2. Smart Structures Laboratory (SSL)-Univ Ctr of Ain Temouchent, Po Box 284,46000, Algeria;3. GREMI, Université d’Orléans-CNRS 14 rue d’Issoudun, 45064 Orléans cedex2, France;4. STMicroelectronics 16 Rue Pierre et Marie Curie, 37100 Tours France
Abstract:The dynamic modelling of a simply-supported thin laminated plate subject to in-plane excitation is established based on the classic shear theory and von Kármán nonlinear theory. The method of multiple scales is used to determine an approximate solution for the system. According to solvability conditions, the nonlinear modulation equations arising from the principal parametric resonances are obtained and two possible nontrivial solutions are performed. To analyze the nonlinear dynamic response of the plate embedded with auxetic layers, 5-layered sandwich plate, in which two auxetic elastic layers are alternatively sandwiched between three positive Poisson’s ratio (PPR) elastic ones, is presented. The natural frequency of model (m, n) shows an increase with respect to the absolute value of Poisson’s ratio. Particularly, the amplitude-frequency responses of the laminated plate subject to principal parametric resonance are analyzed for different values of Poisson’s ratio. Moreover, it can be found that for model (m, n), there must be some certain value or interval of negative Poisson’s ratio (NPR), which, results in zero response effect, in other words, the in-plane excitation will be ineffective for this model when the Poisson’s ratio just lies at such a value or interval. Furthermore, it can also be observed that the certain interval of Poisson’s ratio becomes wider with the increase of damping.
Keywords:Laminated plate  Auxetic layers  Method of multiple scales  Principal parametric resonances  Amplitude-frequency responses
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