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Electroelasticity of dielectric elastomers based on molecular chain statistics

机译:基于分子链统计的介电弹性体的电弹性

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摘要

The mechanical response of dielectric elastomers can be influenced or even controlled by an imposed electric field. It can, for example, cause mechanical stress or strain without any applied load; this phenomenon is referred to as electrostriction. There are many purely phenomenological hyperelastic models describing this electroactive response of dielectric elastomers. In this contribution, we propose an electromechanical constitutive model based on molecular chain statistics. The model considers polarization of single polymer chain segments and takes into account their directional distribution. The latter results from non-Gaussian chain statistics, taking finite extensibility of polymer chains into account. The resulting (one-dimensional) electric potential of a single polymer chain is further generalized to the (three-dimensional) network potential. To this end, we apply directional averaging on the basis of numerical integration over a unit sphere. In a special case of the eight-direction (Arruda-Boyce) model, directional averaging is obtained analytically. This results in an invariant-based electroelastic constitutive model of dielectric elastomers. The model includes a small number of physically interpretable material constants and demonstrates good agreement with experimental data, with respect to the electroactive response and electrostriction of dielectric elastomers.
机译:介电弹性体的机械响应可以受到施加的电场的影响或甚至控制。例如,它可以导致机械应力或菌株而没有任何施加的载荷;这种现象被称为电伸缩。有许多纯粹的现象学高度弹性模型,描述了介电弹性体的这种电活性响应。在这一贡献中,我们提出了一种基于分子链统计的机电本构模型。该模型考虑了单个聚合物链段的极化,并考虑了它们的定向分布。非高斯链统计的后一种结果,考虑了聚合物链的有限可伸展性。所得到的单个聚合物链的电位(一维)电位进一步推广到(三维)网络电位。为此,我们基于单位球体上的数值集成来应用方向平均。在八方向(Aruda-Boyce)模型的特殊情况下,分析地获得方向平均。这导致介电弹性体的不变基胶形结构型模型。该模型包括少量物理可解释的材料常数,并与实验数据相对于电介质弹性体的电活性响应和电触发来演示良好的一致性。

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