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首页> 外文期刊>International journal of non-linear mechanics >Bifurcation of finitely deformed thick-walled electroelastic spherical shells subject to a radial electric field
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Bifurcation of finitely deformed thick-walled electroelastic spherical shells subject to a radial electric field

机译:受径向电场的有限变形厚壁电弹性球形壳体的分叉

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This paper is concerned with the bifurcation analysis of a pressurized electroelastic spherical shell with compliant electrodes on its inner and outer boundaries. The theory of small incremental electroelastic deformations superimposed on a radially finitely deformed electroelastic thick-walled spherical shell is used to determine those underlying configurations for which the superimposed deformations do not maintain the perfect spherical shape of the shell. Specifically, axisymmetric bifurcations are analyzed, and results are obtained for three different electroelastic energy functions, namely electroelastic counterparts of the neo-Hookean, Gent and Ogden elastic energy functions. For the neo-Hookean energy function it was reported previously that for the purely mechanical case axisymmetric bifurcations are possible under external pressure only, no bifurcation solutions being possible for internally pressurized spherical shells. In the case of an electroelastic neo-Hookean model bifurcation under internal pressure becomes possible when the potential difference between the electrodes exceeds a certain value, which depends on the ratio of inner to outer undeformed radii. Results obtained for the three classes of model are significantly different and are illustrated for a range of fixed values of the potential difference. Although of less practical significance, results are also shown for fixed charges, and these are both different between the models and different from the case of fixed potential difference.
机译:本文涉及加压电塑性球形壳体的分叉分析,其内外横向上具有柔顺电极。叠加在径向有限地变形的电胶形厚壁球形壳上的小增量电弹性变形理论用于确定叠加变形不保持壳体的完美球形的基础配置。具体地,分析轴对称分叉分叉,并获得了三种不同的电弹性能量功能的结果,即Neo-Hookean,GENT和OGDEN弹性能量功能的电弹性对应物。对于Neo-Hookean能量功能,先前报道,对于纯机械壳体轴对称分叉仅在外部压力下可以进行,并且内部加压的球形壳也没有分叉溶液。在电时弹性的新卷起模型的情况下,当电极之间的电位差超过一定值时,可以在内部压力下进行,这取决于内部到外未变形的半径的比率。为三类模型获得的结果显着不同,并且被示出了电位差的一系列固定值。虽然具有较少的实际意义,但结果也显示出固定电荷,而且模型之间的不同之处在于固定电位差的情况。

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