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首页> 外文期刊>Polymers >Influence of Temperature on the Electromechanical Properties of Ionic Liquid-Doped Ionic Polymer-Metal Composite Actuators
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Influence of Temperature on the Electromechanical Properties of Ionic Liquid-Doped Ionic Polymer-Metal Composite Actuators

机译:温度对离子液体掺杂离子聚合物-金属复合驱动器机电性能的影响

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摘要

Ionic polymer-metal composite (IPMC) actuators have considerable potential for a wide range of applications. Although IPMC actuators are widely studied for their electromechanical properties, most studies have been conducted at the ambient conditions. The electromechanical performance of IPMC actuators at higher temperature is still far from understood. In this study, the effect of temperature on the electromechanical behavior (the rate of deformation and curvature) and electrochemical behavior (current flow) of ionic liquid doped IPMC actuators are examined and reported. Both electromechanical and electrochemical studies were conducted in air at temperatures ranging from 25 °C to 90 °C. Electromechanically, the actuators showed lower cationic curvature with increasing temperature up to 70 °C and a slower rate of deformation with increasing temperature up to 50 °C. A faster rate of deformation was recorded at temperatures higher than 50 °C, with a maximum rate at 60 °C. The anionic response showed a lower rate of deformation and a higher anionic curvature with increasing temperatures up to 50 °C with an abrupt increase in the rate of deformation and decrease of curvature at 60 °C. In both cationic and anionic responses, actuators started to lose functionality and show unpredictable performance for temperatures greater than 60 °C, with considerable fluctuations at 70 °C. Electrochemically, the current flow across the actuators was increased gradually with increasing temperature up to 80 °C during the charging and discharging cycles. A sudden increase in current flow was recorded at 90 °C indicating a shorted circuit and actuator failure.
机译:离子聚合物金属复合材料(IPMC)执行器具有广泛的应用潜力。尽管对IPMC执行器的机电性能进行了广泛的研究,但大多数研究都是在环境条件下进行的。 IPMC执行器在较高温度下的机电性能仍远未了解。在这项研究中,研究并报道了温度对离子液体掺杂IPMC致动器的机电行为(变形和曲率的速率)和电化学行为(电流)的影响。机电和电化学研究都是在25°C至90°C的空气中进行的。机电方面,执行器在温度升高至70°C时显示出较低的阳离子曲率,在温度升高至50°C时显示出较低的变形速率。在高于50°C的温度下记录到更快的变形速率,在60°C时出现最大变形速率。随着温度升高至最高50°C,阴离子响应显示出较低的形变速率和较高的阴离子曲率,在60°C时形变速率突然增加且曲率减小。在阳离子和阴离子响应中,执行器都开始失去功能,并在高于60°C的温度下表现出不可预知的性能,在70°C时波动很大。电化学上,在充电和放电周期中,随着温度升高至80°C,流经执行器的电流逐渐增加。在90°C时记录到电流突然增加,表明短路和执行器故障。

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