首页> 外文会议>Sensors and Smart Structures Technologies for Civil, Mechanical, and Aerospace Systems 2019 >Fabrication of Biased-Magnetorheological Elastomers (B-MRE) Based on Magnetized Ferromagnetic Particles
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Fabrication of Biased-Magnetorheological Elastomers (B-MRE) Based on Magnetized Ferromagnetic Particles

机译:基于磁化铁磁颗粒的偏磁流变弹性体(B-MRE)的制备

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Magnetorheological elastomers (MREs), like MR fluids, exploit magnetic forces between ferromagnetic particles toproduce a material with instantaneously adjustable properties of stiffness and damping with external magnetic fields. InMREs, the particles are a part of a structured elastomer matrix, and an external magnetic field is applied to achieve aninstantaneous change of stiffness due to magnetic forces between particles. A drawback of conventional MREs is itsinability of softening (reduce stiffness) under an external field. Many engineering applications need an instant change ofits stiffness in both directions, which requires a magnetic bias embedded in the MRE. One way is the use of a permanentmagnet (PM) for pre-straining a base elastomer matrix, but its mechanical design can be bulky due to the size of PM. Inthis paper, we address a fabrication process of the biased-magnetorheological elastomers (B-MREs) and their mechanicalproperties. The B-MREs consist of magnetized ferromagnetic particles as fillers and an elastomer as a binder. Themagnetization of ferromagnetic particles embedded in the elastomer matrix eliminates a need for the use of the PM andcan achieve the desired pre-strain in the B-MRE. The experiment results related with the mechanical properties aftermagnetization were presented. Also, different MRE thickness and weight ratios of the ferromagnetic particles mixed withthe base elastomer were compared in both normal and shear modes.
机译:磁流变弹性体(MRE)与MR流体一样,利用铁磁颗粒之间的磁力来生产具有即时可调的刚度和外部磁场阻尼特性的材料。在MRE中,粒子是结构化弹性体基质的一部分,并且施加外部磁场以实现由于粒子之间的磁力而引起的刚度的瞬时变化。常规MRE的一个缺点是它无法在外部电场下软化(降低刚度)。许多工程应用需要在两个方向上即时改变刚度,这需要在MRE中嵌入磁偏置。一种方法是使用永久磁铁(PM)来预拉伸基础弹性体基质,但由于PM的尺寸,其机械设计可能会很笨重。在本文中,我们讨论了偏磁流变弹性体(B-MRE)的制造工艺及其机械性能。 B-MRE由磁化铁磁颗粒作为填充剂和弹性体作为粘合剂组成。嵌入弹性体基质中的铁磁颗粒的磁化消除了对使用PM的需求,并且可以在B-MRE中实现所需的预应变。给出了与磁化后力学性能相关的实验结果。同样,在正常和剪切模式下,比较了与基础弹性体混合的铁磁颗粒的不同MRE厚度和重量比。

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