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Improving the dielectric and piezoelectric properties of screen-printed low temperature PZT/polymer composite using cold isostatic pressing

机译:使用冷等静压改善丝网印刷的低温pZT /聚合物复合材料的介电和压电性能

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摘要

This paper reports an improvement in dielectric and piezoelectric properties of screen-printed PZT/polymer films for flexible electronics applications using Cold Isostatic Pressing (CIP). The investigation involved half and fully cured PZT/polymer composite pastes with weight ratio of 12:1 to investigate the effect of the CIP process on the piezoelectric and dielectric properties. It was observed that the highest dielectric and piezoelectric properties are achieved at pressures of 5 and 10 MPa for half and fully cured films respectively. The relative dielectric constants were 300 and 245 measured at 1 kHz for the half and fully cured samples. Using unoptimised poling conditions, the initial d33 values were 30 and 35 pC/N for the half and fully cured films, respectively. The fully cured sample was then poled using optimized conditions and demonstrated a d33 of approximately 44 pC/N which is an increase of 7% compared with non-CIP processed materials
机译:本文报道了使用冷等静压(CIP)的柔性电子应用的丝网印刷PZT /聚合物膜在介电和压电性能方面的改进。研究涉及重量比为12:1的半固化和完全固化的PZT /聚合物复合浆料,以研究CIP工艺对压电和介电性能的影响。已观察到,分别对半固化和完全固化的薄膜在5和10 MPa的压力下可获得最高的介电和压电性能。对于半固化和完全固化的样品,在1 kHz下测得的相对介电常数为300和245。在未优化的极化条件下,半固化膜和完全固化膜的初始d33值分别为30和35 pC / N。然后,使用最佳条件对完全固化的样品进行极化处理,结果表明d33约为44 pC / N,与非CIP处理的材料相比,增加了7%。

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