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A novel bi-directional shear mode magneto-rheological elastomer vibration isolator

机译:一种新型双向剪切模式磁流变弹性体振动隔离器

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In this article, a novel bi-directional shear mode magneto-rheological elastomer-based vibration isolator has been designed, fabricated, and characterized to improve the dynamic response and identification of this class of "intellectual" mechanical devices. A heuristic embodiment has been realized in order to design such an isolator wherein both the vertical and horizontal directions can be operated only in the shear mode not only individually but also simultaneously. Two fixtures have been designed for performing the characterization of the magneto-mechanical behavior of the proposed magneto-rheological elastomer isolator in the vertical and horizontal shear modes under wide ranges of strain amplitude (4%-32%), excitation frequency (1-8 Hz), and magnetic flux density (0-220 mT). Experimental results revealed maximum relative magneto-rheological effects of 35% and 27 % in the vertical and horizontal shear modes, respectively. Furthermore, basic mathematical models of single-degree-of-freedom systems, employing the magneto-rheological elastomer-based isolator in the vertical and horizontal shear modes, have been established. The proposed magneto-rheological elastomer isolator in the vertical mode exhibited natural frequency shift of 6.1% by a small increment in the magnetic flux density which approves the potential of the proposed bi-directional shear mode magneto-rheological elastomer-based vibration isolator for vibration control applications, such as seat suspension systems.
机译:在本文中,设计了一种新型双向剪切模式磁流变弹性体的振动隔振器,并设计,并表征了这种“智力”机械装置的动态响应和识别。已经实现了启发式实施例,以设计这样的隔离器,其中垂直和水平方向都可以仅在剪切模式下仅在剪切模式下单独操作而且也可以同时操作。设计了两个灯具,用于在宽范围的应变幅度范围内(4%-32%),激发频率(1-8)在垂直和水平剪切模式下执行所提出的磁流变弹性体隔离器的磁力机械行为的表征。 Hz)和磁通密度(0-220 mt)。实验结果分别显示出垂直和水平剪切模式的最大相对磁流变效应为35%和27%。此外,已经建立了在垂直和水平剪切模式下采用基于磁流变弹性体的隔离器的单级自由度系统的基本数学模型。垂直模式中所提出的磁流变弹性体隔离器在磁通密度的小增量中表现出6.1%的自然频移,其批准了所提出的双向剪切模式磁流变弹性体的振动隔离器进行振动控制的电位应用,如座椅悬架系统。

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