首页> 外文会议>9th biennial conference on engineering systems design and analysis 2008 >NUMERICAL ANALYSIS OF A THREE ELEMENT MICROBEAM ARRAY SUBJECT TO ELECTRODYNAMICAL PARAMETRIC EXCITATION
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NUMERICAL ANALYSIS OF A THREE ELEMENT MICROBEAM ARRAY SUBJECT TO ELECTRODYNAMICAL PARAMETRIC EXCITATION

机译:电动参量激励下的三元素微束阵列的数值分析

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The dynamic response of parametrically excited microbeam arrays is governed by nonlinear effects which directly influence their performance. To date, documented theoretical models consist of lumped-mass models. While a lumped-mass approach is useful for a qualitative understanding of the system response it does not resolve the spatio-temporal interaction of the individual elements in the array. Thus, we employ a consistent nonlinear continuum model to investigate the nonlinear dynamic behavior of an array of N nonlinearly coupled microbeams. Investigations focus on the behavior of a small size array in its 1:1:1 internal, parametric, and 3:1 internal resonances, which correspond to low, medium and high DC-voltage input, respectively. The dynamic equations of motion are solved numerically. The dynamic behavior of the three beam systems reveals coexisting periodic and aperiodic solutions. Similarities in the comprehensive bifurcation structures of the three beam systems provide insight to the nearest neighbor response of multi-element microbeam arrays subject to electrodynamic parametric excitation.
机译:参数激发的微束阵列的动态响应受非线性效应的支配,非线性效应直接影响其性能。迄今为止,已记录的理论模型由集总质量模型组成。虽然集总质量方法有助于对系统响应进行定性了解,但它不能解决阵列中各个元素的时空相互作用。因此,我们采用一致的非线性连续模型来研究N个非线性耦合微束阵列的非线性动力学行为。研究集中于小尺寸阵列在其1:1:1内部,参数和3:1内部共振中的行为,这分别对应于低,中和高直流电压输入。运动的动力学方程通过数值求解。三个光束系统的动态行为揭示了周期和非周期解的共存。三个光束系统的综合分叉结构中的相似之处提供了对受电参量激励激励的多元素微束阵列最近邻响应的洞察力。

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