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Polymer Composites with Oriented Magnetic Nanowires as Fillers

机译:定向磁性纳米线作为填料的聚合物复合材料

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Metallic nickel nanowires with excellent physical properties have been introduced into polydimethylsiloxane (PDMS) matrix to form polymer nanocomposites. Nanowires were synthesized by template-assisted electrochemical deposition. By utilizing ferromagnetic nickel nanowires, small external magnetic field can be used to control their alignment and distribution during composite synthesis. Unlike dielectrophoresis, optical tweezers, and microfluidic flow control, magnetic manipulation provides a cost-effective, non-contact, and versatile approach to control nanostructured materials in fluids over a large area. Polydimethylsiloxane composites with nanowires arranged in longitudinal, transverse, and random orientations with respect to the applied load direction were studied. Tensile tests showed that the composites with longitudinal arrangement have higher elastic modulus and tensile strength than the other composite samples. Experimentally obtained elastic modulus values were compared with the prediction of classical Halpin-Tsai model.
机译:具有优异物理性能的金属镍纳米线已被引入聚二甲基硅氧烷(PDMS)基质中,以形成聚合物纳米复合材料。纳米线是通过模板辅助电化学沉积法合成的。通过利用铁磁镍纳米线,可以在合成过程中使用较小的外部磁场来控制其排列和分布。与介电泳,光镊和微流控不同,磁处理提供了一种经济有效的非接触式多功能方法来控制大面积流体中的纳米结构材料。研究了纳米线相对于施加的载荷方向沿纵向,横向和无规排列的聚二甲基硅氧烷复合材料。拉伸试验表明,纵向排列的复合材料比其他复合材料样品具有更高的弹性模量和拉伸强度。将实验获得的弹性模量值与经典Halpin-Tsai模型的预测值进行比较。

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