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A state-of-the-art review on magnetorheological elastomer devices

机译:磁流变弹性体设备的最新研究

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During the last few decades, magnetorheological (MR) elastomers have attracted a significant amount of attention for their enormous potential in engineering applications. Because they are a solid counterpart to MR fluids, MR elastomers exhibit a unique field-dependent material property when exposed to a magnetic field, and they overcome major issues faced in magnetorheological fluids, e.g. the deposition of iron particles, sealing problems and environmental contamination. Such advantages offer great potential for designing intelligent devices to be used in various engineering fields, especially in fields that involve vibration reduction and isolation. This paper presents a state of the art review on the recent progress of MR elastomer technology, with special emphasis on the research and development of MR elastomer devices and their applications. To keep the integrity of the knowledge, this review includes a brief introduction of MR elastomer materials and follows with a discussion of critical issues involved in designing magnetorheological elastomer devices, i.e. operation modes, coil placements and principle fundamentals. A comprehensive review has been presented on the research and development of MR elastomer devices, including vibration absorbers, vibration isolators, base isolators, sensing devices, and so on. A summary of the research on the modeling mechanical behavior for both the material and the devices is presented. Finally, the challenges and the potential facing magnetorheological elastomer technology are discussed, and suggestions have been made based on the authors' knowledge and experience.
机译:在过去的几十年中,磁流变(MR)弹性体因其在工程应用中的巨大潜力而​​受到了广泛的关注。因为它们是MR流体的固体替代物,所以MR弹性体在暴露于磁场时会表现出独特的取决于场的材料性能,并且它们克服了磁流变流体(例如磁流体)所面临的主要问题。铁颗粒的沉积,密封问题和环境污染。这些优点为设计用于各种工程领域的智能设备提供了巨大的潜力,特别是在涉及减振和隔离的领域。本文对MR弹性体技术的最新进展进行了最新的综述,特别着重于MR弹性体设备及其应用的研究和开发。为了保持知识的完整性,该评估包括MR弹性体材料的简要介绍,然后讨论了设计磁流变弹性体设备所涉及的关键问题,即工作模式,线圈放置和原理基础。已经对MR弹性体设备的研究和开发进行了全面的综述,包括振动吸收器,振动隔离器,基础隔离器,传感设备等。介绍了对材料和设备的力学行为建模的研究摘要。最后,讨论了磁流变弹性体技术的挑战和潜在的挑战,并根据作者的知识和经验提出了建议。

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