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The Effect of Particle Size on the Electromechanical Properties of PZT/PVDF

机译:粒径对PZT / PVDF机电性能的影响

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The Nb modified PZT piezoelectric ceramic was synthesized by conventional solid-state reaction, where all of different particle sizes had the same physical properties. 0-3 modified PZT/PVDF composites were formed by hot-pressing method. The particle size effect of modified PZT on the relative dielectric and. piezoelectric properties of the composites were investigated. The relative dielectric constant ε{sub}r, piezoelectric constant d{sub}33 and electromechanical coupling factor k{sub}p were higher in the composite containing larger PZT particle size. The microstructures of the composites were studied by SEM, the composite with the finer PZT particle size was more homogeneous, but larger particle size was easy to be contacted. In a high volume fraction particle-loaded composite, some piezoelectric ceramic particle appeared to be in contact, as in a 1-3 connectivity pattern. The larger particle size of modified PZT itself could be seen as the grain of modified PZT contact in a 1-3 connectivity pattern and easy to be contacted each other compared to the finer particle size in the composites, thus reducing the resistance of the composites and the poling process became effective, which led to higher properties. The optimal particle size of PZT is about 100μm, the Nb modified PZT/PVDF (volume fraction 70/30) composite show higher dielectric and piezoelectric properties than the others, ε{sub}r=156.6, d{sub}33=69pC/N and k{sub}p=0.358.
机译:通过常规固态反应合成Nb改性的PZT压电陶瓷,其中所有不同的颗粒尺寸具有相同的物理性质。通过热压方法形成0-3改性的PZT / PVDF复合材料。改性PZT对相对电介质的粒度效应。研究了复合材料的压电性能。在包含较大的PZT粒径的复合材料中,相对介电常数ε13和机电耦合因子k {sub} p较高,压电常数d {sub} 33和机电耦合因子k {sub} p更高。通过SEM研究了复合材料的微观结构,具有细粒粒径的复合材料更均匀,但易于接触较大的粒度。在高容量级分颗粒加载的复合材料中,一些压电陶瓷颗粒似乎在1-3个连接模式中接触。改性PZT本身的较大粒径可以被视为在1-3个连接图案中的改性PZT接触的颗粒,并且与复合材料中的细粒尺寸相比,易于接触,从而降低复合材料的电阻和极化过程变得有效,这导致了更高的特性。 PZT的最佳粒径为约100μm,Nb改性PZT / PVDF(体积分数70/30)复合材料显示比其他介电和压电性能更高,ε{Sub} R = 156.6,D {Sub} 33 = 69pc / n和k {sub} p = 0.358。

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