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首页> 外文期刊>Journal of intelligent material systems and structures >Soft magnetorheological elastomers as new actuators for valves
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Soft magnetorheological elastomers as new actuators for valves

机译:软磁流变弹性体作为阀门的新执行器

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摘要

The actuation behavior of soft silicone-based magnetorheological elastomers in magnetic fields of variable strength was investigated. An inhomogeneous magnetic field gives rise to a reversible actuation effect, which is the result of the competition between magnetic and elastic forces in the material. Magnetorheological elastomers are capable of performing more pronounced deformations than known rigid actuator materials. In this article, the actuation behavior of magnetorheological elastomer ring-shaped bodies in a valve-type device for the control of an air flow is demonstrated. For this purpose, magnetorheological elastomer rings with different Shore hardness were prepared and used in the valve. In addition to the common isotropic magnetorheological elastomer samples, rings with an anisotropic arrangement of the magnetic particles were also prepared. The actuation of these anisotropic magnetorheological elastomers was compared with that of the isotropic samples. Based on simulations, the inhomogeneity of the magnetic field at the magnetorheological elastomer material which is required for the actuation could be strongly affected by the shape in the design of the magnetic yoke. In this study, the closing characteristics of the valve with different yoke shapes and magnetorheological elastomer materials were evaluated by measuring the dependence of the air flow rate on the magnetic field strength. It is demonstrated that the air flow through the valve can be controlled by the current in the field-generating coil, which yields the base for a new type of magnetic valve.
机译:研究了基于软硅酮的磁流变弹性体在可变强度磁场中的驱动行为。不均匀的磁场会产生可逆的驱动效果,这是材料中磁力和弹力之间竞争的结果。磁流变弹性体比已知的刚性致动器材料能够执行更明显的变形。在本文中,说明了用于控制气流的阀型装置中磁流变弹性体环形体的致动行为。为此,准备了具有不同肖氏硬度的磁流变弹性体环,并将其用于阀门中。除了常见的各向同性磁流变弹性体样品外,还制备了具有各向异性排列的磁性颗粒的环。将这些各向异性磁流变弹性体的驱动与各向同性样品的驱动进行了比较。基于模拟,磁轭设计中的形状会严重影响驱动所需的磁流变弹性体材料处的磁场的不均匀性。在这项研究中,通过测量空气流速对磁场强度的依赖性,评估了具有不同轭形状和磁流变弹性体材料的阀门的关闭特性。事实证明,通过阀门产生的气流可以由励磁线圈中的电流控制,这为新型电磁阀奠定了基础。

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