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Homogenization and multiscale stability analysis in finite magneto-electro-elasticity

机译:有限磁电弹性的均质化和多尺度稳定性分析

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摘要

Soft matter electro-elastic, magneto-elastic and magneto-electro-elastic composites exhibit coupled material behavior at large strains. Examples are electro-active polymers and magnetorheological elastomers, which respond by a deformation to applied electric or magnetic fields, and are used in advanced industrial environments as sensors and actuators. Polymer-based magneto-electric-elastic composites are a new class of tailor-made materials with promising future applications. Here, a magneto-electric coupling effect is achieved as a homogenized macro-response of the composite with electro-active and magneto-active constituents. These soft composite materials show different types of instability phenomena, which even might be exploited for future enhancement of their performance. This covers micro-structural instabilities, such as buckling of micro-fibers or particles, as well as material instabilities in the form of limit-points in the local constitutive response. Here, the homogenization-based scale bridging links long wavelength micro-structural instabilities to material instabilities at the macro-scale. This work outlines a framework of an energy-based homogenization in electro-magneto-mechanics, which allows a tracking of postcritical solution paths such as those related to pull-in instabilities. Representative simulations demonstrate a tracking of inhomogenous composites, showing the development of postcritical zones in the microstructure and a possible instable homogenized material response.
机译:软物质电弹性,磁弹性和磁电弹性复合材料在大应变下表现出耦合的材料性能。例子是电活性聚合物和磁流变弹性体,它们通过变形对施加的电场或磁场作出响应,并在先进的工业环境中用作传感器和致动器。聚合物基磁电弹性复合材料是一类新型的定制材料,具有广阔的应用前景。在此,作为具有电活性和磁活性成分的复合材料的均质的宏观响应,实现了磁电耦合作用。这些软复合材料显示出不同类型的不稳定性现象,甚至可能会被用于进一步提高其性能。这涵盖了微观结构的不稳定性,例如微纤维或微粒的屈曲,以及局部本构响应中极限点形式的材料不稳定性。在这里,基于均质化的尺度桥接将长波长的微观结构不稳定性与宏观尺度上的材料不稳定性联系在一起。这项工作概述了电磁力学中基于能量的均匀化的框架,该框架允许跟踪诸如与拉动不稳定性相关的后临界解路径。代表性的模拟显示了对不均匀复合材料的跟踪,显示了微结构中后临界区的发展以及可能不稳定的均质材料响应。

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