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Dynamic compression testing of a tunable spring element consisting of a magnetorheological elastomer

机译:由磁流变弹性体组成的可调弹簧元件的动态压缩测试

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Magnetorheological elastomers (MRE) are interesting candidates for active vibration control of structural systems. In this study, spring elements consisting of magnetorheological elastomer were prepared and tested in dynamic compression to study the changes in their stiffness and vibration damping characteristics under the influence of a magnetic field. Aligned and isotropic magnetorheological elastomer composites were prepared using room temperature vulcanizing silicone elastomer as the matrix material and carbonyl iron as the magnetizable filler. Aligned MREs were prepared by curing the material under an external magnetic field. Aligned MREs were tested and the results were compared with isotropic composites with no preferred orientation. The mechanical properties of the MREs were tested in cyclic compression passively and with increasing magnetic flux density. The influence of the testing frequency and strain amplitude on the dynamic stiffness and damping properties was studied. It was noted that when measured in a magnetic field both the dynamic spring constants and the loss factor values of aligned MREs were increased compared to the zero-field values. The dynamic stiffness of aligned MREs increased with increasing testing frequency and it was tunable with magnetic flux density in the studied frequency range. The loss factor of aligned MREs was also tunable with the magnetic flux density but the absolute values also depend on the testing frequency. The dynamic stiffness of the aligned MREs measured in compression decreased with increasing strain amplitude, but the damping properties were not affected similarly. On the basis of these results, MREs are applicable as tunable spring elements for active vibration control.
机译:磁流变弹性体(MRE)是主动控制结构系统的有趣方法。在这项研究中,制备了由磁流变弹性体组成的弹簧元件,并对其进行了动态压缩测试,以研究其刚度和减振特性在磁场作用下的变化。使用室温硫化有机硅弹性体作为基质材料,羰基铁作为可磁化填料,制备了取向各向同性的磁流变弹性体复合材料。通过在外部磁场下固化材料来制备对齐的MRE。测试了对齐的MRE,并将结果与​​没有优选取向的各向同性复合材料进行了比较。 MRE的机械性能在被动循环压缩和增加磁通密度的情况下进行了测试。研究了试验频率和应变幅度对动刚度和阻尼特性的影响。注意到当在磁场中测量时,与零磁场值相比,对准的MRE的动态弹簧常数和损耗因子值都增加了。对齐的MRE的动态刚度随测试频率的增加而增加,并且在研究的频率范围内可根据磁通密度进行调整。对齐的MRE的损耗因数也可随磁通密度调节,但绝对值也取决于测试频率。在压缩中测得的对齐MRE的动态刚度随应变幅度的增加而降低,但阻尼特性并未受到类似的影响。根据这些结果,MRE可作为主动振动控制的可调弹簧元件。

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