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首页> 外文期刊>ZAMP: Zeitschrift fur Angewandte Mathematik und Physik: = Journal of Applied Mathematics and Physics: = Journal de Mathematiques et de Physique Appliquees >Bifurcation of finitely deformed thick-walled electroelastic cylindrical tubes subject to a radial electric field
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Bifurcation of finitely deformed thick-walled electroelastic cylindrical tubes subject to a radial electric field

机译:受限于径向电场的有限变形厚壁电弹性圆柱管的分叉

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This paper is concerned with the bifurcation analysis of a pressurized electroelastic circular cylindrical tube with closed ends and compliant electrodes on its curved boundaries. The theory of small incremental electroelastic deformations superimposed on a finitely deformed electroelastic tube is used to determine those underlying configurations for which the superimposed deformations do not maintain the perfect cylindrical shape of the tube. First, prismatic bifurcations are examined and solutions are obtained which show that for a neo-Hookean electroelastic material prismatic modes of bifurcation become possible under inflation. This result contrasts with that for the purely elastic case for which prismatic bifurcation modes were found only for an externally pressurized tube. Second, axisymmetric bifurcations are analyzed, and results for both neo-Hookean and Mooney-Rivlin electroelastic energy functions are obtained. The solutions show that in the presence of a moderate electric field the electroelastic tube becomes more susceptible to bifurcation, i.e., for fixed values of the axial stretch axisymmetric bifurcations become possible at lower values of the circumferential stretches than in the corresponding problems in the absence of an electric field. As the magnitude of the electric field increases, however, the possibility of bifurcation under internal pressure becomes restricted to a limited range of values of the axial stretch and is phased out completely for sufficiently large electric fields. Then, axisymmetric bifurcation is only possible under external pressure.
机译:本文涉及具有封闭端和柔顺电极的加压型电弹性圆柱形管的分叉分析。叠加在有限变形的电胶压上的小增量电弹性变形理论用于确定叠加变形不保持管的完美圆柱形的底层配置。首先,检查棱柱分叉并获得解决方案,其示出了对于新鞍座电弹性材料的棱镜棱镜的棱柱形式变得可能。该结果与纯弹性壳体对比,仅针对外部加压管发现棱镜分叉模式的纯弹性壳体。其次,分析了轴对称分叉分叉,并获得了Neo-Hoxean和Mooney-Rivlin电弹性能量功能的结果。解决方案表明,在适度的电场的存在下,电弹性管变得更容易受到分叉的影响,即,对于轴向轴对称分叉的固定值,在圆周延伸的较低值下比在不存在的相应问题中变得更低。电场。然而,随着电场的幅度增加,内部压力下分叉的可能性被限制在轴向拉伸的有限范围内,并且完全逐渐为足够大的电场。然后,轴对称分叉仅在外部压力下可能。

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