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Mesostructural origin of the field-induced pseudo-plasticity effect in a soft magnetic elastomer

机译:在软磁弹性体中造粒伪塑性效应的脑部结构起源

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A model is presented to studying the pseudo-plasticity effect in a soft magnetic elastomer:a weakly-linked polymer matrix filled with micron-size particles of a ferromagnet with virtually zero coercivity(e.g.,iron carbonyl).If the filling fraction of the composite is sufficiently high,such a material displays a remarkable ability to radically change its rheological behavior:being subjected to external magnetic field,the sample loses its elasticity and responds to external mechanical load as if being made of a ductile substance with no tendency to restore its initial shape.In our simulations we show that,considering the system at the mesoscopic scale(as an assembly of particles embedded in an elastic continuum)and taking into account just the magnetostatic and elastic interactions,one is able to qualitatively correct reproduce the field-induced pseudo-plasticity effect.
机译:提出了一种模型,用于研究软磁弹性体中的伪塑性作用:含有微米尺寸颗粒的铁圆形颗粒的弱链接聚合物基质,具有几乎零矫顽力(例如,铁羰基)。如果复合材料的填充部分足够高,这种材料显示出显着的彻底改变其流变行为的能力:进行外部磁场,样品失去其弹性并响应外部机械负载,仿佛延展性物质,没有恢复其延期的延展性初始形状。我们的模拟我们表明,考虑到介于介质秤的系统(作为嵌入弹性连续体中的颗粒的组装)并考虑到静磁和弹性相互作用,一个能够定性正确地再现现场 - 诱导伪可塑性效应。

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