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首页> 外文期刊>Journal of intelligent material systems and structures >Investigation and evaluation of effect of dehydration on vibration characteristics of silver-electroded ionic polymer-metal composite actuator
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Investigation and evaluation of effect of dehydration on vibration characteristics of silver-electroded ionic polymer-metal composite actuator

机译:脱水对银离子聚合物金属复合致动器振动特性影响的研究与评价

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摘要

Theoretical and experimental investigation of dehydration loss of ionic polymer-metal composite actuator is important to evaluate the stability, accuracy, and effectiveness of actuation. An ionic polymer-metal composite actuator of silver electrode has been analyzed to demonstrate the effect of dehydration on vibration characteristics during actuation. Experiment is conducted in cantilever configuration under direct current potential, and the bending and vibration characteristics are measured by Laser Vibrometer. As dehydration occurs during the actuation process, these experimental data are used to establish empirical model for loss-factor in terms of input voltage and time using Cobb-Douglas production method. A correlation is also developed for tip deflection with applied voltage. For theoretical investigation, multimode approximation has been taken into consideration and extended Hamilton's principle is applied for developing the governing equation of motion of the actuator. Few modes are taken into consideration, and the equations are solved numerically to obtain the transient and steady-state responses of the actuator. Theoretical steady-state results are compared and validated with the experimental results. Both theoretical and experimental results show the gradual reduction of tip displacement due to dehydration.
机译:离子聚合物-金属复合驱动器脱水损失的理论和实验研究对于评估驱动器的稳定性,准确性和有效性非常重要。已经对银电极的离子聚合物-金属复合致动器进行了分析,以证明在致动过程中脱水对振动特性的影响。在直流电势下以悬臂式配置进行实验,并通过激光振动计测量弯曲和振动特性。由于在驱动过程中会发生脱水,因此使用Cobb-Douglas生产方法将这些实验数据用于建立损耗因数的经验模型,该模型基于输入电压和时间。还开发了一种针对尖端偏转与施加电压的相关性。为了进行理论研究,已考虑了多模逼近,并将扩展的汉密尔顿原理用于开发执行机构的运动控制方程。很少考虑模式,对方程进行数值求解,以获得执行器的瞬态和稳态响应。将理论稳态结果与实验结果进行比较并验证。理论和实验结果均表明,由于脱水,针尖位移逐渐减小。

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