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Poly (vinylidene fluoride)/zinc oxide smart composite material

机译:聚偏氟乙烯/氧化锌智能复合材料

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摘要

This work aimed at fabrication and electromechanical characterization of a smart material system composed of electroactive polymer and ceramic materials. The idea of composite material system is on account of complementary characteristics of the polymer and ceramic for flexibility and piezoelectric activity. Our preliminary work included Polyvinylidene Fluoride (PVDF) as the flexible piezoelectric polymer, and Zinc Oxide (ZnO) as the piezoelectric ceramic brittle, but capable to respond strains without poling. Two alternative processes were investigated. The first process makes use of ZnO fibrous formation achieved by sintering PVA/zinc acetate precursor fibers via electrospinning. Highly brittle fibrous ZnO mat was dipped into a PVDF polymer solution and then pressed to form pellets. The second process employed commercial ZnO nanopowder material. The powder was mixed into a PVDF/acetone polymer solution, and the resultant paste was pressed to form pellets. The free standing composite pellets with electrodes on the top and bottom surfaces were then subjected to sinusoidal electric excitation and response was recorded using a fotonic sensor. An earlier work on electrospun PVDF fiber mats was also summarized here and the electromechanical characterization is reported.
机译:这项工作旨在制造由电活性聚合物和陶瓷材料组成的智能材料系统并对其进行机电性能表征。复合材料系统的想法是由于聚合物和陶瓷具有互补性,从而具有柔韧性和压电活性。我们的初步工作包括使用聚偏二氟乙烯(PVDF)作为柔性压电聚合物,以及氧化锌(ZnO)作为压电陶瓷脆性材料,但是能够在不极化的情况下响应应变。研究了两种替代方法。第一种方法利用了通过电纺法烧结PVA /醋酸锌前体纤维而形成的ZnO纤维。将高脆性的纤维状ZnO毡浸入PVDF聚合物溶液中,然后压制成粒。第二种方法采用市售的ZnO纳米粉体材料。将粉末混合到PVDF /丙酮聚合物溶液中,并将所得糊状物压制成丸。然后,对在顶部和底部表面上带有电极的自立式复合材料小球进行正弦电激发,并使用光电传感器记录响应。这里还总结了有关电纺PVDF纤维毡的早期工作,并报道了电机械特性。

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