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Performance of natural rubber and silicone-based magnetorheological elastomers under large-strain combined axial and shear loading

机译:天然橡胶和有机硅基磁流变弹性体在大应变联合轴向和剪切载荷下的性能

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This study presents an experimental investigation on large-strain behavior of natural rubber– and silicone-based magnetorheological elastomers within a larger scope of structural vibration mitigation due to wind, traffic and seismic events. Magnetorheological elastomer samples with different weight percentages of iron particles, additives, and elastomer matrix were fabricated. The microstructures of specimens were examined, and their mechanical properties were investigated by a unique electromagnetic double-lap shear experimental setup capable of applying simultaneous compression and shear loads. The experimental results demonstrated that the isotropic natural rubber–based magnetorheological elastomers exhibit about 30% magnetorheological effect under large strains, while they achieve a higher magnetorheological effect under the combined axial and shear loading. The magnetorheological effect was 92% and 33% for 10% and 100% shear strains when 100 psi axial stress was applied. A natural rubber–based magnetorheological elastomer was further investigated applying dynamic cyclic load with and without compression load for different strains, frequencies, and magnetic field intensities. It was observed that for higher frequency, magnetorheological effect was reduced. Magnetorheological effects were 73% and 29% for 0.1 and 10 Hz frequencies, respectively, under 100 psi axial stress at 150% shear strain. The result of this study suggests that isotropic natural rubber–based magnetorheological elastomers may be suitable for high-demand-force applications, and in particular, in civil structures.
机译:这项研究提供了对天然橡胶和有机硅基磁流变弹性体在较大范围内缓解风,交通和地震事件引起的大应变行为的实验研究。制备了具有不同重量百分比的铁颗粒,添加剂和弹性体基质的磁流变弹性体样品。检查了样品的微观结构,并通过独特的电磁双搭接剪切实验装置研究了它们的机械性能,该装置能够同时施加压缩和剪切载荷。实验结果表明,基于各向同性天然橡胶的磁流变弹性体在大应变下表现出约30%的磁流变效应,而在轴向和剪切载荷共同作用下却具有较高的磁流变效应。当施加100 psi轴向应力时,对于10%和100%剪切应变,磁流变效应分别为92%和33%。进一步研究了基于天然橡胶的磁流变弹性体在不同应变,频率和磁场强度下施加和不施加压缩载荷的动态循环载荷。观察到对于更高的频率,磁流变效应降低了。在100 psi轴向应力和150%剪切应变下,0.1和10 Hz频率的磁流变效应分别为73%和29%。这项研究的结果表明,基于各向同性天然橡胶的磁流变弹性体可能适用于高要求力的应用,尤其是在民用建筑中。

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