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Characterization of actuation properties of magnetorheological elastomers with embedded hard magnetic particles

机译:嵌入硬磁颗粒的磁流变弹性体的驱动特性表征

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This study investigates a new generation of magnetorheological elastomers based on hard magnetic particles. Unlike traditional magnetorheological elastomers that use iron particles, a dispersion of hard magnetic materials aligned in an electromagnetic field will produce a magnetorheological elastomer with magnetic poles. When a magnetic field is applied, perpendicularly to these poles, the filler particles generate torque and cause rotational motion of the magnetorheological elastomer blend. The primary goal of this study is to fabricate and characterize the actuation properties of magnetorheological elastomers filled with various hard magnetic particles. To this end, samples of magnetorheological elastomers consisting of hard magnetic materials were fabricated using four different particle types, and a test setup (electromagnet) was constructed. After mounting the magnetically anisotropic samples in a fixed-free configuration, uniform magnetic fields are applied to the samples (perpendicular to the poled direction), which causes the sample to bend, similar to a cantilevered beam. The blocked force and tip displacement of the samples were measured to characterize actuation properties of the samples. The results show that the responses of the deflection and the blocked force at the tip show linear trends over a reasonable range, suggesting that magnetorheological elastomers consisting of hard magnetic materials can be used as bending-type actuators in small mechanical systems and devices.
机译:这项研究研究了基于硬磁性颗粒的新一代磁流变弹性体。与使用铁颗粒的传统磁流变弹性体不同,在电磁场中排列的硬磁性材料的分散体将产生具有磁极的磁流变弹性体。当垂直于这些磁极施加磁场时,填料颗粒产生扭矩并引起磁流变弹性体混合物的旋转运动。这项研究的主要目的是制造和表征填充了各种硬磁性颗粒的磁流变弹性体的驱动特性。为此,使用四种不同的颗粒类型制造了由硬磁性材料组成的磁流变弹性体样品,并构建了测试装置(电磁体)。在将磁各向异性样品安装为无固定结构后,将均匀的磁场(垂直于极化方向)施加到样品上,这将导致样品弯曲,类似于悬臂梁。测量样品的阻塞力和尖端位移以表征样品的致动特性。结果表明,尖端的挠曲和闭锁力的响应在合理范围内呈线性趋势,这表明由硬磁材料组成的磁流变弹性体可以在小型机械系统和设备中用作弯曲型致动器。

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