论文标题

朝向软磁弹性扭曲执行器

Towards a soft magnetoelastic twist actuator

论文作者

Fischer, Lukas, Menzel, Andreas M.

论文摘要

软执行器可以将外部刺激转化为机械变形。由于它们对外部磁场的变形响应,磁凝胶和弹性体代表了此类任务的理想候选者。通常,在这种情况下,讨论了线性的磁刻曲变形,即沿直轴的伸长或收缩。与此相反,我们在这里建议实现一个扭曲执行器,该扭曲器通过周围施加磁场轴周围的扭转变形做出响应。为此,我们从理论上研究了基本模型系统的总体机械响应,该系统包含软弹性矩阵中的可离散磁性颗粒。两种不同类型的离散粒子排列用作非磁性状态下的起始条件。这些一方面包含全局扭曲的各向异性粒子排列,另一方面包含一组离散的螺旋状粒子结构,另一方面并排放置。除了磁化时产生的扭曲外,我们还评估了不同的其他变形模式。我们的分析支持在流体应用或其他类型的软执行器中构建可磁性和可致使的扭转混合装置,这些扭转器可以在不同组件之间启动相对旋转。

Soft actuators allow to transform external stimuli to mechanical deformations. Because of their deformational response to external magnetic fields, magnetic gels and elastomers represent ideal candidates for such tasks. Mostly, linear magnetostrictive deformations, that is, elongations or contractions along straight axes are discussed in this context. In contrast to that, we here suggest to realize a twist actuator that responds by torsional deformations around the axis of the applied magnetic field. For this purpose, we theoretically investigate the overall mechanical response of a basic model system containing discrete magnetizable particles in a soft elastic matrix. Two different types of discrete particle arrangements are used as starting conditions in the nonmagnetized state. These contain globally twisted anisotropic particle arrangements on the one hand, and groups of discrete helical-like particle structures positioned side by side on the other hand. Besides the resulting twist upon magnetization, we also evaluate different other modes of deformation. Our analysis supports the construction of magnetically orientable and actuatable torsional mixing devices in fluidic applications or other types of soft actuators that initiate relative rotations between different components.

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