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Piezoelectric Films Based on Polyethylene Modified by Aluminosilicate Filler

机译:硅铝酸盐填料改性聚乙烯压电薄膜

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摘要

The development, universality and miniaturization of electronic devices leads to the search for new piezoelectric materials, among which recently, polymers play an increasingly important role. In this work, composites based on two types of polyethylene—high density polyethylene (HDPE), and medium density polyethylene (MDPE)—and aluminosilicate fillers were obtained by extrusion process. This method allowed obtaining flexible electrets in the form of a thin film after polarization under a constant electric field of 100 V/μm. The morphology of the composites was characterized by scanning electron microscopy, whereas the crystallinity was determined by X-ray diffraction. The mechanical properties and thermal stability of the composites were examined by means of tensile tests and thermogravimetry, respectively. The piezoelectric characteristics were appointed by measuring the electric charge and the voltage in the polarized samples. Piezoelectric coefficients, and the stability of electrets over time were also determined. Moreover, the effect of film orientation on piezoelectric properties was investigated. Composites with appropriate morphology (i.e., well dispersed filler particles in the polymer matrix and formed holes) were obtained which ensured permanent electrical polarization. It was found that the best piezoelectric, mechanical properties and thermal stability exhibits HDPE composite with 5% of aluminosilicate filler.
机译:电子设备的发展,通用性和小型化导致人们寻求新的压电材料,最近,聚合物在其中起着越来越重要的作用。在这项工作中,通过挤压工艺获得了基于两种聚乙烯的复合材料-高密度聚乙烯(HDPE)和中密度聚乙烯(MDPE)-铝硅酸盐填料。该方法允许在极化后在100 V /μm的恒定电场下获得薄膜形式的柔性驻极体。通过扫描电子显微镜表征复合材料的形态,而通过X射线衍射确定结晶度。分别通过拉伸试验和热重法检查了复合材料的机械性能和热稳定性。通过测量极化样品中的电荷和电压来指定压电特性。还确定了压电系数以及驻极体随时间的稳定性。此外,研究了膜取向对压电性能的影响。获得具有适当形态(即,在聚合物基质中良好分散的填料颗粒和形成的孔)的复合材料,其确保了永久的电极化。发现最佳的压电,机械性能和热稳定性表现出具有5%的铝硅酸盐填料的HDPE复合材料。

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