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Field-Dependent Stiffness of a Soft Structure Fabricated from Magnetic-Responsive Materials: Magnetorheological Elastomer and Fluid

机译:由磁响应材料制成的软结构的场相关刚度:磁流变弹性体和流体

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摘要

A very flexible structure with a tunable stiffness controlled by an external magnetic stimulus is presented. The proposed structure is fabricated using two magnetic-responsive materials, namely a magnetorheological elastomer (MRE) as a skin layer and a magnetorheological fluid (MRF) as a core to fill the void channels of the skin layer. After briefly describing the field-dependent material characteristics of the MRE and MRF, the fabrication procedures of the structure are provided in detail. The MRE skin layer is produced using a precise mold with rectangular void channels to hold the MRF. Two samples are produced, namely with and without MRF, to evaluate the stiffness change attributed to the MRF. A magnetic field is generated using two permanent magnets attached to a specialized jig in a universal tensile machine. The force-displacement relationship of the two samples are measured as a function of magnetic flux density. Stiffness change is analyzed at two different regions, namely a small and large deformation region. The sample with MRF exhibits much higher stiffness increases in the small deformation region than the sample without MRF. Furthermore, the stiffness of the sample with MRF also increases in the large deformation region, while the stiffness of the sample without MRF remains constant. The inherent and advantageous characteristics of the proposed structure are demonstrated through two conceptual applications, namely a haptic rollable keyboard and a smart braille watch.
机译:提出了一种非常灵活的结​​构,其刚性受外部磁刺激控制。所提出的结构是使用两种磁响应材料制造的,即磁流变弹性体(MRE)作为表层和磁流变流体(MRF)作为芯填充表层的空隙通道。在简要描述了MRE和MRF的随场变化的材料特性之后,详细介绍了该结构的制造过程。使用具有矩形空隙通道的精密模具生产MRE皮层,以固定MRF。产生两个样品,即带有和不带有MRF的样品,以评估归因于MRF的刚度变化。使用两个永久磁铁产生的磁场会附着在万能拉伸机的专用夹具上。测量两个样品的力-位移关系作为磁通密度的函数。在两个不同的区域(即小变形区域和大变形区域)分析刚度变化。具有MRF的样品在较小的变形区域显示出比没有MRF的样品高得多的刚度增加。此外,具有MRF的样品的刚度在较大的变形区域也增加,而没有MRF的样品的刚度保持恒定。所提出的结构的固有的和有利的特征通过两个概念性的应用来证明,即触觉可滚动键盘和智能盲文手表。

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