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Nanotexture influence of BaTiO3 particles on piezoelectric behaviour of PA 11/BaTiO3 nanocomposites

机译:BaTiO3颗粒的纳米结构对PA 11 / BaTiO3纳米复合材料压电性能的影响

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摘要

The piezoelectric activity of a hybrid ferroelectric nanocomposite, i.e. polyamide 11/barium titanate (BT), has been investigated for different loadings of BT particles. The BT volume fraction (phi) was ranging from 0.024 to 0.4 with a particle size of 50, 100, 300 and 700 nm. The influence of polarization mode on the piezoelectric behaviour has been studied. The magnitude of the poling field used in this study is in the same order of magnitude of the one used for bulk BT i.e. significantly lower than for piezoelectric polymers. The optimum piezoelectric coefficient is reached when the amorphous phase of the polymeric matrix is in the liquid state i.e. for a polarization temperature higher than the glass transition and for time constant allowing macromolecular mobility. The composite piezoelectric activity decreases for particles size lower than 300 nm due to the loss of the tetragonal phase. The nanotexture of these particles has been investigated by transmission electron microscopy (TEM) and high-resolution TEM. A core shell structure has been observed. An increase of the longitudinal piezoelectric strain coefficient d(33) with the raising of BT volume fraction was shown. Contrary to inorganic piezoelectric ceramics, the dielectric permittivity of hybrid composites remains moderate; therefore it allows the piezoelectric voltage coefficient of composites to be higher than ceramics.
机译:对于不同的BT颗粒负载量,已经研究了混合铁电纳米复合材料即聚酰胺11 /钛酸钡(BT)的压电活性。 BT体积分数(phi)为0.024至0.4,粒径为50、100、300和700 nm。研究了极化模式对压电性能的影响。在这项研究中使用的极化场的大小与用于本体BT的极化场的大小相同,即显着低于压电聚合物。当聚合物基质的非晶态处于液态时,即对于高于玻璃化转变的极化温度以及对于允许大分子迁移的时间常数,达到了最佳的压电系数。由于四方相的损失,对于小于300nm的粒径,复合压电活性降低。这些颗粒的纳米结构已经通过透射电子显微镜(TEM)和高分辨率TEM进行了研究。已经观察到核壳结构。随着BT体积分数的增加,纵向压电应变系数d(33)增大。与无机压电陶瓷相反,杂化复合材料的介电常数保持中等。因此,它允许复合材料的压电电压系数高于陶瓷。

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