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Compressometer based method for measuring converse electrostriction in polymers

机译:基于压缩量的聚合物测量逆电伸缩的方法

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Electrostriction is the fundamental mechanism of electromechanical coupling in all insulator materials. In this work, the electrostrictive coefficients of several polymers were measured by a converse method. A modified compressometer for resolving fractional changes in capacitance of the order of 10{sup}(-6) was used. A highly sensitivity capacitance bridge GenRad 1615 was coupled with a lock-in amplifier to detect attofarad (10{sup}(-18)) level capacitance changes caused by cyclic uniaxialstresses on samples. Measurements were done at room temperature with an electrical frequency of 1 kHz and a mechanical frequency of 0.4 Hz. We found negative electrostriction coefficients for the polymers tested. The influences of crystallinity, glassreinforcement, and blending were observed to affect the electrostriction behavior due to the fact that electrostriction is mainly governed by the elastic properties in low-permittivity polymers. Using these recent data, along with widely accepted data onferroelectric materials and soft polymers, the linear relationship between electrostriction coefficient (Q) and the ratio of elastic compliance and dielectric permittivity (s/ε{sub}ε{sub}r,) was confirmed. This leads to an effective way to predict theelectrostriction coefficient in dielectric materials.
机译:电触发是所有绝缘材料中机电耦合的基础机制。在这项工作中,通过逆转法测量几种聚合物的电致伸缩系数。使用用于解决10 {SUP}( - 6)的电容的分数变化的改进的压缩计。高灵敏度电容桥Genrad 1615与锁定放大器耦合,以检测由循环单轴杆菌对样品引起的仲裁(10 {SUP}( - 18))电平电容变化。测量在室温下进行,电频率为1 kHz,机械频率为0.4Hz。我们发现所测试的聚合物的负电触发系数。结晶度,玻璃素裂解和混合的影响是由于电触发主要由低介电常数聚合物中的弹性性能来影响电击定行为。使用这些最近的数据,以及广泛接受的数据蛋白质释电材料和软聚合物,确认电击定系数(Q)之间的线性关系和弹性顺应性和介电介电常数(S /ε{Sub}×{Sub} R)之间的线性关系。这导致有效的方法来预测介电材料中的电抑制系数。

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