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Dielectric constant enhancement in a silicone elastomer filled with lead magnesium niobate-lead titanate

机译:填充铌酸铅镁-钛酸铅的有机硅弹性体的介电常数提高

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摘要

Lead magnesium niobate-lead titanate (PMN—PT) ferroelectric powder was used to develop a particulated composite based on a silicone elastomer matrix, with improved dielectric permittivity. The filler was characterised by X-ray diffraction and scanning electron microscopy. Complex dielectric permittivity (10-10~8 Hz) and tensile mechanical properties (elastic modulus and ultimate stress) of composites at various filler contents (up to 30% by vol.) were compared with those of the neat silicone elastomer. Both the dielectric constant and loss factor regularly increased with the filler content. The elastic modulus increased with a lower rate than that of the dielectric constant. Even though the addition of filler resulted in a detriment of both toughness, ultimate stress and elongation at break, a good stretchability was still retained, as elongation ratios greater than 3 were possible at the highest filler content. Several dielectric models were compared to the experimental data and the best match was achieved by the Bruggeman model, which can be used as a predictive rule for different volume contents of filler.
机译:铌酸铅镁-钛酸铅(PMN-PT)铁电粉被用于开发具有改善的介电常数的基于有机硅弹性体基质的颗粒状复合材料。通过X射线衍射和扫描电子显微镜对填料进行表征。与纯有机硅弹性体相比,在各种填料含量(最高30%(体积))下复合材料的复介电常数(10-10〜8 Hz)和拉伸机械性能(弹性模量和极限应力)进行了比较。介电常数和损耗因子均随填料含量的增加而规律地增加。弹性模量以比介电常数低的速率增加。即使添加填料导致韧性,极限应力和断裂伸长率均受到损害,但仍保留了良好的拉伸性,因为在最高填料含量下,伸长率可能大于3。将几种介电模型与实验数据进行了比较,并通过Bruggeman模型获得了最佳匹配,该模型可以用作填料不同体积含量的预测规则。

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