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Finite element design and analysis of adaptive base isolator utilizing laminated multiple magnetorheological elastomer layers

机译:利用多层磁流变弹性体层的自适应基础隔振器的有限元设计与分析

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Available magnetorheological elastomer devices normally consist one to two layers of small-size magnetorheological elastomer materials. To be used in large-scale structures, magnetorheological elastomer devices with multiple larger magnetorheological elastomer materials are expected. This article addresses the critical issue in designing a large-scale device with multiple layers of low magnetic conductive magnetorheological elastomer materials, that is, magnetic circuit design. The primary target in magnetic circuit design for magnetorheological elastomer devices is to provide sufficient and uniform magnetic field to all magnetorheological elastomer layers in the device. In this article, finite element investigations are conducted. An innovative magnetic circuit design is proposed for magnetorheological elastomer base isolator with multi-layer of magnetorheological elastomer materials. In the design, laminated magnetorheological elastomer and steel structure is adopted as part of the magnetic core together with two steel blocks. Cylindrical steel tube is used as the yoke of the magnetic circuit. Two plates are placed on the top and bottom of the device to form enclosed magnetic path in the device. Finite element results showed that such innovative magnetic design is able to provide sufficient and uniform magnetic field to all magnetorheological elastomer layers, that is, 25 magnetorheological elastomer layers with thickness of 1mm and diameter of 120mm in this case. Finally, the influence of lateral deformation of the magnetorheological elastomer base isolator on the magnetic field is investigated. It is found that the magnetic field in magnetorheological elastomer materials deteriorates when the deformation of the device increases.
机译:可用的磁流变弹性体设备通常由一到两层小型磁流变弹性体材料组成。为了用于大规模结构中,期望具有多种更大的磁流变弹性体材料的磁流变弹性体装置。本文解决了设计具有多层低导磁的磁流变弹性体材料的大型设备的关键问题,即磁路设计。磁流变弹性体设备的磁路设计的主要目标是为设备中的所有磁流变弹性体层提供足够均匀的磁场。在本文中,进行了有限元研究。针对具有多层磁流变弹性体材料的磁流变弹性体基础隔离器,提出了一种创新的磁路设计。在设计中,叠层磁流变弹性体和钢结构与两个钢块一起被用作磁芯的一部分。圆柱形钢管用作磁路的轭。在设备的顶部和底部放置两个板,以在设备中形成封闭的磁路。有限元结果表明,这种创新的磁性设计能够为所有磁流变弹性体层提供足够均匀的磁场,即25个磁流变弹性体层,厚度为1mm,直径为120mm。最后,研究了磁流变弹性体基础隔离器的横向变形对磁场的影响。发现当设备的变形增加时,磁流变弹性体材料中的磁场变差。

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