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Piezoelectric properties of polymer/lead-free ceramic composites

机译:聚合物/无铅陶瓷复合材料的压电性能

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摘要

Thermoplastic/lead-free piezoelectric ceramic composite have been prepared. Sodium niobate (NaNbO3) has been chosen for its high Curie temperature. Moreover, it could be synthesized with two different morphologies: NaNbO3 nanowires (NN NW’s) and NaNbO3 particles (NNP’s). The filler has been dispersed in thermoplastic matrices with different dielectric permittivities eM: PA11 ( eM D 2Þ and polyvinylidene fluoride (PVDF) (eM D 10Þ. Due to polarization conditions, only ceramic particles are poled. The piezoelectric coefficient (d33) has been measured in composites. The higher d33 is recorded in composites based on PA11 (d33 D 6.5 pC.N¡1 for 30 vol. % NN NW’s). The influence of the NN aspect ratio on PVDF/NN composites has been analysed: the higher d33 (d33 D 2.6 pC.N¡1 for 25 vol. %) is recorded in PVDF/NN P’s. The major interest of these hybrid lead-free piezoelectric composites is mild poling conditions, ductility and thermal stability of piezoelectric performances.
机译:已经制备了热塑性/无铅压电陶瓷复合材料。铌酸钠(NaNbO3)因居里温度高而被选中。此外,它可以用两种不同的形态合成:NaNbO3纳米线(NN NW)和NaNbO3粒子(NNP)。填料已分散在具有不同介电常数eM的热塑性基体中:PA11(eM D2Þ和聚偏二氟乙烯(PVDF)(eM D10Þ)。由于极化条件,只有陶瓷颗粒被极化,测量了压电系数(d33)在基于PA11的复合材料中记录的d33较高(对于30 vol。%NN NW,d33 D 6.5pC.N¡1)。分析了NN长宽比对PVDF / NN复合材料的影响:较高的d33在PVDF / NN P中记录了(d33 D 2.6pC.N¡1,占25%(体积)),这些混合无铅压电复合材料的主要兴趣在于温和的极化条件,延展性和压电性能的热稳定性。

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