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Strain-Enhanced Nanocomposites of Electrostrictive Polymers and High-k Nanofillers for Micro-actuation Applications

机译:用于微型驱动应用的电致致密聚合物和高k纳米填料的应变增强纳米复合材料

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This paper reports on nanocomposites of enhanced field induced strain based on an electrostrictive polymer mixed with BaTiO3 and TiO2 nanofillers of high dielectric constants. Nanocomposite thin film bimorph actuator stacks were optimized with respect to the nanofiller homogeneous dispersion and thin film surface roughness upon film annealing. The investigations showed that the nanocomposite properties are strongly dependent on the nanofiller content, nanoparticle size and relative permittivity. By the addition of nanofillers, the electro-mechanical properties of the polymer matrix have been significantly improved. Particularly, we obtained increased permittivity to about 44 and about two-fold larger strain for a 2 wt% BaTiO3 nanocomposite and a 1.4 times larger strain for a 10 wt% TiO2 nanocomposite. FEM simulations indicate that nanocomposite based bending actuators can exhibit remarkably large deformation.
机译:本文涉及基于高介电常数的BATIO3和TiO2纳米填料混合的电致致致致致致致致致致致致致致致致致致致致致致致致致咯的聚合物的纳米复合材料报告。 相对于薄膜退火上的纳米填充物均匀分散和薄膜表面粗糙度优化了纳米复合薄膜Bimorph致动器堆叠。 研究表明,纳米复合性能强烈取决于纳米填充物含量,纳米颗粒尺寸和相对介质。 通过加入纳米填料,聚合物基质的电力性能已显着改善。 特别是,对于2wt%BATIO3纳米复合材料,我们得到了约44至约44和大约两倍的较大菌株的增加和1.4倍较大菌株的1.4倍。 FEM模拟表明基于纳米复合材料的弯曲致动器可以表现出显着的大变形。

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