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New electrostrictive PVDF copolymers for large-strain actuator application

机译:适用于大应变执行器的新型电致伸缩PVDF共聚物

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摘要

A new class of ferroelectric polymeric material was developed by using the copolymers of polyvinylidene fluoride and trifluoroethylene, P(VDF-TrFE). Copolymer samples were subjected to high-energy electron irradiation, and the material appeared to be converted into a relaxor ferroelectric. The polarization hysteresis loop near the dielectric peak temperature became nearly non-hysteric, but gradually broadened and evolved into a normal ferroelectric hysteresis loop as the temperature was reduced. The dielectric constant as a function of temperature showed a broad dispersive peak in frequency, with the dispersion obeying the Vogel-Fulcher law. The dielectric constant was greatly increased with electron bombardment and a massive electrostriction was observed. Accompanying these changes were the resulting large electrically induced strain and high elastic energy density. The cause of these changes is presently believed to be the breakup of the coherent macro-polar regions containing the all-trans molecular conformation into micro-polar regions with increasing amorphous-crystalline interface as the sample was exposed to electron irradiation.
机译:通过使用聚偏二氟乙烯和三氟乙烯的共聚物P(VDF-TrFE),开发了一种新型的铁电聚合物材料。对共聚物样品进行高能电子辐照,该材料似乎转变为弛豫铁电体。接近电介质峰值温度的极化磁滞回线几乎变为非磁滞,但随着温度降低,极化磁滞回线逐渐变宽并演变为正常的铁电磁滞回线。介电常数随温度的变化在频率上显示出一个宽的色散峰,该色散服从Vogel-Fulcher定律。介电常数随电子轰击而大大增加,并且观察到大量的电致伸缩。伴随这些变化而产生的大的电感应应变和高的弹性能密度。目前认为这些变化的原因是当样品暴露于电子辐照下时,包含全反式分子构象的相干大极性区域分解为具有增加的非晶-结晶界面的微极性区域。

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