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VISCOELASTIC MATERIALS WITH MAGNETICALLY-CONTROLLABLE PROPERTIES FOR VIBRATION DAMPING AND ISOLATION

机译:具有磁可控特性的粘弹性材料,用于减振和隔离

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Viscoelastic materials (VEMs) are in widespread use for vibration damping and isolation. Magnetorheological (MR) fluid devices are also increasingly used for vibration control. MR fluids are suspensions of metal particles in various carrier fluids that have properties controllable by imposition of a magnetic field, using mechanisms that suggest analogous manipulation of properties in more solid carrier or base materials. This paper describes a research effort that studied the properties of composite or compound materials that we call MR-VEM. Compared to traditional VEM, the material offers the opportunity to change properties - at a minimum, the stiffness, and to a lesser extent material damping - by application of magnetic fields. Properties can be manipulated with a DC or AC field. Magnetic design studies for MR-VEM compounds are described. The paper focuses on the experimental characterization of dynamic performance of MR-VEM devices for use in vibration isolation systems. Two properties were used as the basis for distinguishing samples: particle fill factor, that is the volume ratio of MR particles to the base VEM, and the magnitude of magnetic field applied while curing the MR-VEM elements. Applied magnetic field was also varied during testing. The compound material performance is studied through a range of experiments. Test data showing a factor of five stiffness adjustability are presented. Limitations imposed by the size of required magnetic components and by material heating are quantified and discussed. Overall, the material shows promise for applications requiring adjustability in effective stiffness. The paper concludes by considering actuation with the materials.
机译:粘弹性材料(VEM)被广泛用于减振和隔离。磁流变(MR)流体设备也越来越多地用于振动控制。 MR流体是金属微粒在各种载流体中的悬浮液,它们具有可通过施加磁场来控制特性的特性,使用的机理暗示了在更固体的载体或基础材料中对特性进行类似操纵的机制。本文介绍了一项研究工作,该工作研究了我们称为MR-VEM的复合材料或复合材料的性能。与传统的VEM相比,该材料提供了通过施加磁场来改变特性的机会-最小程度地改变了刚度,并在较小程度上改变了材料的阻尼。可以使用DC或AC字段来操作属性。描述了针对MR-VEM化合物的磁性设计研究。本文着重于用于隔振系统的MR-VEM设备动态性能的实验表征。两种特性被用作区分样品的基础:颗粒填充因子,即MR颗粒与基础VEM的体积比,以及在固化MR-VEM元素时施加的磁场强度。在测试过程中,施加的磁场也有所变化。通过一系列实验研究了复合材料的性能。给出了显示五个刚度可调系数的测试数据。量化和讨论了所需磁性部件的尺寸和材料加热所带来的限制。总体而言,这种材料显示出对要求可调节有效刚度的应用的希望。本文通过考虑使用材料促动而得出结论。

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