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Improving the d33 and g33 properties of 0-3 piezoelectric composites by dielectrophoresis

机译:通过介电电泳改善0-3压电复合材料的d33和g33性能

摘要

Composites of piezoelectric particles in a polymer matrix with enhanced properties in the poling direction were prepared by dielectrophoretic alignment of the particles. The effect of processing parameters such as the amplitude and frequency of the applied electric field and the viscosity of the matrix on the dielectric and piezoelectric properties of the cured composite were demonstrated for a composite with a PZT volume fraction of 0.2. The amount of structuring could be correlated to the dielectric and piezoelectric properties of the composite through the order parameter for the average particle chain orientation, which was derived from image analysis of the microstructure. The piezoelectric properties of the aligned composites can be described with a new model for composites containing particles arranged into chains. The model predictions are in good agreement with the experimental results.
机译:通过粒子的介电泳取向,制备了在聚合物基质中具有在极化方向上增强的性能的压电粒子的复合物。对于PZT体积分数为0.2的复合材料,证明了加工参数(如施加的电场的幅度和频率以及基体的粘度)对固化复合材料的介电和压电性能的影响。结构量可以通过平均颗粒链取向的顺序参数与复合材料的介电和压电性能相关,该参数是从微观结构的图像分析得出的。对齐的复合材料的压电特性可以用一种新的模型来描述,该模型包含颗粒排列成链的复合材料。模型预测与实验结果吻合良好。

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