首页> 外文会议>Electrical Insulating Materials, 2005. (ISEIM 2005). Proceedings of 2005 International Symposium on >Space charge characteristics of fullerenol and carbon nanotube doped polyurethane elastomer (PUE) actuators
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Space charge characteristics of fullerenol and carbon nanotube doped polyurethane elastomer (PUE) actuators

机译:富勒烯醇和碳纳米管掺杂的聚氨酯弹性体(PUE)促动器的空间电荷特性

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PUE films have been found to exhibit an electrostriction effect. We propose the applying them to a moving device such as an actuator similar to artificial muscles using the electrostriction effect. The actuators are of monomorph type fabricated by PUE film and metal electrodes evaporated at different thickness on the film surfaces. Because these actuators work at a high voltage of more than 1 KV, we controlled the molecular structure of the films by doping C/sub 60/ or CNT derivatives into PUE so that the actuators could operate under a low voltage. The bends of C/sub 60/ and CNT-doped actuators were larger than those of non-doped actuators and the working voltage was also low. The force of the actuators increased in proportion to the electric field, and strongly depended on the thickness of the PUE films. Furthermore, in order to clarify the relationship between the stretch of PUE film and the bending mechanism of actuators, we measured the space charge of PUE films using the pulsed electroacoustic method.
机译:已经发现PUE膜表现出电致伸缩作用。我们建议使用电致伸缩效应将它们应用于类似于人造肌肉的运动装置,例如致动器。致动器是单晶型的,由PUE膜和在膜表面上以不同厚度蒸发的金属电极制成。因为这些致动器在高于1 KV的高压下工作,所以我们通过将C / sub 60 /或CNT衍生物掺杂到PUE中来控制薄膜的分子结构,从而使致动器可以在低压下工作。掺杂C / sub 60 /和CNT的执行器的弯曲比未掺杂的执行器的弯曲大,并且工作电压也低。致动器的力与电场成比例地增加,并且在很大程度上取决于PUE膜的厚度。此外,为了阐明PUE膜的拉伸和致动器弯曲机制之间的关系,我们使用脉冲电声法测量了PUE膜的空间电荷。

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