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Effect of Sonication Time on Magnetorheological Effect for Monomodal Magnetic Elastomers

机译:超声处理时间对单峰磁性弹性体磁流变效应的影响

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The effect of sonication time on the storage modulus and particle morphology for magnetic elastomers was investigated by dynamic viscoelastic measurements and morphological studies. An ultrasonic wave using a homogenizer was irradiated to magnetic liquids containing 70 wt % carbonyl iron, for up to 30 min before cure. SEM photographs revealed that magnetic particles were randomly dispersed in the polyurethane matrix for magnetic elastomers with sonication. A parameter showing nonlinear viscoelasticity for magnetic elastomers with sonication decreased from 0.75 to 0.4, indicating that the aggregations of magnetic particles had been destroyed by the sonication. The storage modulus at 500 mT at the linear viscoelastic regime significantly increased with the irradiation time, reaching saturation after 10 min; this suggests an increase in the number of chains of magnetic particles by sonication, due to the random dispersion of magnetic particles. At high strains, the storage modulus at 500 mT increased by 8.9 kPa by sonication, indicating the number of chains of magnetic particles which were not destroyed by increased sonication. It was also found that the storage modulus for polyurethane elastomers without magnetic particles was not varied by sonication, suggesting that the polyurethane network was not broken. The effect of sonication time on the viscoelastic properties, and on the magnetorheological response for magnetic elastomers, is discussed.
机译:通过动态粘弹性测量和形态学研究,研究了超声处理时间对磁性弹性体的储能模量和颗粒形态的影响。在固化之前,将使用均质器的超声波辐照到含70 wt%羰基铁的磁性液体中达30分钟。 SEM照片显示,磁性粒子通过超声处理被随机分散在聚氨酯基质中。超声处理的磁性弹性体的显示非线性粘弹性的参数从0.75降低到0.4,这表明超声处理破坏了磁性粒子的聚集。线性粘弹性条件下,在500 mT下的储能模量随着辐照时间的增加而显着增加,在10分钟后达到饱和。这表明由于磁性颗粒的随机分散,通过超声处理增加了磁性颗粒的链数。在高应变下,通过超声处理,在500 mT时的储能模量增加8.9 kPa,这表明未被超声处理破坏的磁性颗粒链数。还发现,没有磁性颗粒的聚氨酯弹性体的储能模量没有通过超声处理而改变,这表明聚氨酯网络没有破裂。讨论了超声处理时间对粘弹性和磁弹性体的磁流变响应的影响。

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