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Nonlinear dynamic stability of piezoelectric thermoelastic electromechanical resonators

机译:压电热弹性机电谐振器的非线性动态稳定性

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This research work?deals with analyzing instability and nonlinear behaviors of piezoelectric thermal nano-bridges. An adjustable thermo-elastic model with the ability to control stability conditions is developed to examine the system behavior at different temperatures. To increase the performance range and improve system characteristics, a piezovoltage is applied and a spring is connected to the sliding end of the deformable beam as design parameters. The partial differential equations (PDEs) are derived using the extended Hamilton’s principle and Galerkin decomposition is implemented to discretize the nonlinear equations, which are solved via a computational method called the step-by-step linearization method (SSLM). To improve the accuracy of the solution, the number of mode shapes and the size of voltage increments are analyzed and sufficient values are employed in the solution. The validity of the formulation and solution method is verified with experimental, analytical, and numerical data for several cases. Finally, the vibration and eigenvalue problem of the actuated nano-manipulator subjected to electrostatic and Casimir attractions are investigated. It is concluded that the fringing-fields correction changes the system frequency, static equilibrium, and pull-in characteristics significantly. The results are expected to be instrumental in the analysis, design, and operation of numerous adjustable advanced nano-systems.
机译:这项研究工作了吗?涉及分析压电热纳米桥的不稳定性和非线性行为。开发了一种可调节的热弹性模型,具有控制稳定性条件的能力,以检查不同温度的系统行为。为了提高性能范围和改善系统特性,施加压电电压,弹簧连接到可变形光束的滑动端作为设计参数。使用扩展汉密尔顿的原理和Galerkin分解来导出部分微分方程(PDE)以使非线性方程离散,这通过称为逐步线性化方法(SSLM)的计算方法来解决。为了提高解决方案的准确性,分析了模式形状的数量和电压增量的尺寸,并在解决方案中采用了足够的值。用实验,分析和数值数据验证配方和解决方案方法的有效性。最后,研究了经受静电和卡西米尔景点的致动纳米操纵器的振动和特征值问题。结论是,流苏校正的校正显着改变了系统频率,静态平衡和拉入特性。结果预计在众多可调高级纳米系统的分析,设计和运行中是有乐器。

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