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Piezoelectric Nanofibers for Integration in Multifunctional Materials

机译:用于多功能材料中整合的压电纳米纤维

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This paper deals with realization of multifunctional composite materials, having piezoelectric effect. First of all polymeric mats of electrospun piezoelectric nanofibers were realized with different geometries. Such effect has been maximized by designing properly the electrospinning apparatus in order to enhance the electric field in the interelectrodic space which polarize the dipolar moments. The mats are then integrated in a silicon rubber matrix and measurements of the electromechanical response of the composite materials thus manufactured are performed. A good integration of nanofibers inside the host material is evidenced by electron microscopy images, allowing delaminations, which could occur using piezoelectric films, to be avoided. A large electrical response to both impact and vibration stimuli has been finally demonstrated.
机译:本文涉及实现多功能复合材料,具有压电效应。首先用不同的几何形状实现Electrome压电纳米纤维的所有聚合物垫。通过适当地设计静电纺丝设备以增强偏振偶极时刻的电电极空间中的电场,这些效果已经最大化。然后将垫子集成在硅橡胶基质中,并进行由此制造的复合材料的机电响应的测量。通过电子显微镜图像证明了主体材料内部纳米纤维的良好积分,允许避免使用压电膜发生的分层。最终证明了对撞击和振动刺激的大量电气响应。

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