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首页> 外文期刊>Journal of intelligent material systems and structures >In-situ poling and structurization of piezoelectric particulate composites
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In-situ poling and structurization of piezoelectric particulate composites

机译:压电颗粒复合材料的原位极化和结构化

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摘要

Composites of lead zirconate titanate particles in an epoxy matrix are prepared in the form of 0-3 and quasi 1-3 with different ceramic volume contents from 10% to 50%. Two different processing routes are tested. Firstly a conventional dielectrophoretic structuring is used to induce a chain-like particle configuration, followed by curing the matrix and poling at a high temperature and under a high voltage. Secondly a simultaneous combination of dielectrophoresis and poling is applied at room temperature while the polymer is in the liquid state followed by subsequent curing. This new processing route is practiced in an uncured thermoset system while the polymer matrix still possess a relatively high electrical conductivity. Composites with different degrees of alignment are produced by altering the magnitude of the applied electric field. A significant improvement in piezoelectric properties of quasi 1-3 composites can be achieved by a combination of dielectrophoretic alignment of the ceramic particles and poling process. It has been observed that the degree of structuring as well as the functional properties of the in-situ structured and poled composites enhance significantly compared to those of the conventionally manufactured structured composites. Improving the alignment quality enhances the piezoelectric properties of the particulate composites.
机译:环氧基质中锆钛酸铅钛酸酯颗粒的复合物以0-3和准1-3的形式制备,陶瓷体积含量从10%到50%不等。测试了两种不同的处理路径。首先,使用常规的介电电泳结构来诱导链状颗粒构型,然后固化基质并在高温和高压下极化。其次,在室温下,当聚合物为液态时,同时施加介电电泳和极化的组合,随后进行固化。这种新的加工路线是在未固化的热固性体系中实施的,而聚合物基质仍具有相对较高的电导率。通过改变外加电场的大小,可以生产出具有不同取向度的复合材料。准1-3复合材料的压电性能的显着改善可以通过陶瓷颗粒的介电电泳排列和极化过程相结合来实现。已经观察到,与常规制造的结构化复合物相比,原位结构化和极化复合物的结构化程度以及功能特性显着提高。改善取向质量提高了颗粒复合材料的压电性能。

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