论文标题

磁凝胶和弹性体的磁弹性变形,含有混合尺寸的颗粒

Magnetically induced elastic deformations of magnetic gels and elastomers containing particles of mixed size

论文作者

Fischer, Lukas, Menzel, Andreas M.

论文摘要

当软弹性复合材料将外部场的变化转化为机械变形时,它们可以用作执行器。在这里,我们解决了磁凝胶和弹性体的相应变形行为,该行为由软聚合基质中的磁性胶体颗粒组成,并暴露于外部磁场。由于这种材料的许多实际实现涉及多分散大小分布的颗粒含量,因此我们集中于混合粒径对总体变形响应的影响。为了进行系统的研究,我们的重点是二进制尺寸分布。我们系统地改变了较大颗粒相对于较小粒子的比例,并表征了所得的磁刻;评估了各种不同空间粒子排列和弹性矩阵的不同程度可压缩性的后果。在部分中,我们观察到了混合粒径所选系统的总体响应的质量变化。具体而言,响应诱导磁化的量和相对伸长或收缩的总体变化可以逆转为相反的行为类型。我们的结果应适用于其他软弹性复合材料的特性,例如电流凝胶和弹性体,也暴露于外部电场时。总体而言,我们希望刺激有目的使用混合粒径作为设计量身定制的要求材料行为的手段的进一步研究。

Soft elastic composite materials can serve as actuators when they transform changes in external fields into mechanical deformation. Here, we address the corresponding deformational behavior of magnetic gels and elastomers, consisting of magnetizable colloidal particles in a soft polymeric matrix and exposed to external magnetic fields. Since many practical realizations of such materials involve particulate inclusions of polydisperse size distributions, we concentrate on the effect that mixed particle sizes have on the overall deformational response. To perform a systematic study, our focus is on binary size distributions. We systematically vary the fraction of larger particles relative to smaller ones and characterize the resulting magnetostrictive behavior. The consequences for systems of various different spatial particle arrangements and different degrees of compressibility of the elastic matrix are evaluated. In parts, we observe a qualitative change in the overall response for selected systems of mixed particle sizes. Specifically, overall changes in volume and relative elongations or contractions in response to an induced magnetization can be reversed into the opposite types of behavior. Our results should apply to the characteristics of other soft elastic composite materials like electrorheological gels and elastomers when exposed to external electric fields as well. Overall, we hope to stimulate the further investigation on the purposeful use of mixed particle sizes as a means to design tailored requested material behavior.

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