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Band-gaps in electrostatically controlled dielectric laminates subjected to incremental shear motions

机译:承受增量剪切运动的静电控制介电层压板中的带隙

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The thickness vibrations of a finitely deformed infinite periodic laminate made out of two layers of dielectric elastomers is studied. The laminate is pre-stretched by inducing a bias electric field perpendicular to the layers. Incremental time-harmonic fields superimposed on the initial finite deformation are considered next. Utilizing the Bloch-Floquet theorem along with the transfer matrix method we determine the dispersion relation which relates the incremental fields frequency and the phase velocity.Ranges of frequencies at which waves cannot propagate are identified whenever the Bloch-parameter is complex. These band-gaps depend on the phases properties, their volume fraction, and most importantly on the electric bias field. Our analysis reveals how these band-gaps can be shifted and their width can be modified by changing the bias electric field. This implies that by controlling the electrostatic bias field desired frequencies can be filtered out. Representative examples of laminates with different combinations of commercially available dielectric elastomers are examined.
机译:研究了由两层介电弹性体制成的有限变形无限周期层压板的厚度振动。通过感应垂直于各层的偏置电场来对层压板进行预拉伸。接下来考虑叠加在初始有限变形上的增量时谐波场。利用Bloch-Floquet定理和传递矩阵方法,我们确定了与增量磁场频率和相速度相关的色散关系。只要Bloch参数复杂,就可以识别出波不能传播的频率范围。这些带隙取决于相的性质,其体积分数,最重要的是取决于电偏置场。我们的分析揭示了如何通过改变偏置电场来改变这些带隙并改变其宽度。这意味着通过控制静电偏置场,可以滤除所需的频率。研究了具有市售介电弹性体的不同组合的层压制品的代表性实例。

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