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Highly Magneto-Responsive Elastomeric Films Created by a Two-Step Fabrication Process

机译:通过两步制造工艺产生的高磁响应弹性膜

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摘要

An innovative method for the preparation of elastomeric magnetic films with increased magneto-responsivity is presented. Polymeric films containing aligned magnetic microchains throughout their thickness are formed upon the magnetophoretic transport and assembly of microparticles during polymer curing. The obtained films are subsequently magnetized at a high magnetic field of 3 T directed parallel to the orientation of the microchains. We prove that the combination of both alignment of the particles along a favorable direction during curing and the subsequent magnetization of the solid films induces an impressive increase of the films’ deflection. Specifically, the displacements reach few millimeters, up to 85 times higher than those of the nontreated films with the same particle concentration. Such a process can improve the performance of the magnetic films without increasing the amount of magnetic fillers and, thus, without compromising the mechanical properties of the resulting composites. The proposed method can be used for the fabrication of magnetic films suitable as components in systems in which large displacements at relatively low magnetic fields are required, such as sensors and drug delivery or microfluidic systems, especially where remote control of valves is requested to achieve appropriate flow and mixing of liquids.
机译:提出了一种新颖的方法,用于制备具有更高磁响应率的弹性体磁性薄膜。在聚合物固化过程中,通过微粒的磁致传递和组装,形成了在整个厚度范围内均包含对齐的磁性微链的聚合物膜。随后将获得的薄膜在平行于微链取向的3 T高磁场中磁化。我们证明,在固化过程中,沿着良好方向的粒子排列和随后的固体薄膜磁化的结合,会引起薄膜挠度的显着增加。具体而言,位移达到几毫米,比相同颗粒浓度的未处理薄膜高出85倍。这种方法可以在不增加磁性填料的量的情况下提高磁性膜的性能,从而不损害所得复合材料的机械性能。所提出的方法可用于制造磁性膜,该磁性膜适于在要求在较低磁场下产生大位移的系统中用作组件,例如传感器和药物输送或微流体系统,特别是在需要远程控制阀以实现适当控制的情况下液体的流动和混合。

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