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Magnetorheological dampers with various designs of hybrid magnetic circuits

机译:具有多种混合磁路设计的磁流变阻尼器

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Novel concepts for the magnetic circuit in magnetorheological dampers have been proven. In contrast to the established magnetic circuits where the magnetic field for the control of the magnetorheological fluid is generated by the coil of an electromagnet, hybrid magnetic circuits consisting of at least one permanent or hard magnet and an electromagnet are used in the new approaches. Three different technical configurations are distinguished: (I) The electromagnet is combined with two permanent magnets, whose magnetization cannot be modified even by strong magnetic fields of the electromagnet The main advantage is the improved fail-safe behavior of the damper in case of a power failure. (2) The electromagnet is combined with a hard magnet, whose magnetization can be modified by the electromagnet. This configuration leads to high energy efficiency, because electric power is only required in short pulses for the switching of the hard magnet. (3) All three types of magnetic field sources, permanent, hard, and electromagnet, are combined in the magnetic circuit, which gives the highest flexibility of the magnetic field generation and the damping control at the expense of a relatively large effort. Demonstrators for magnetorheological dampers with all three magnetic circuits were constructed and their performances were tested. The results of the investigations are described in this paper.
机译:磁流变阻尼器中磁路的新颖概念已得到证明。与已经建立的磁路相反,在现有的磁路中,电磁流通过电磁线圈产生用于控制磁流变流体的磁场,在新方法中使用了由至少一个永磁体或硬磁体和电磁体组成的混合磁路。区分了三种不同的技术配置:(I)电磁体与两个永磁体组合,即使通过电磁体的强磁场也无法改变其磁化强度。主要优点是,在断电情况下,阻尼器的故障安全性能得到改善失败。 (2)电磁铁与硬磁铁结合,其磁化强度可以通过电磁铁改变。这种配置导致高能量效率,因为仅在短脉冲中需要电力来切换硬磁体。 (3)永磁体,硬磁体和电磁体这三种类型的磁场源都组合在磁路中,从而以相对较大的工作量提供了最大的磁场生成和阻尼控制灵活性。构造了具有所有三个磁路的磁流变阻尼器的演示器,并测试了它们的性能。本文描述了调查结果。

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