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High performance conducting polymer actuators utilizing a tubular geometry and helical wire interconnects

机译:利用管状几何形状和螺旋线互连的高性能导电聚合物执行器

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摘要

Electromechanical actuators based on conducting polymers can be viewed as simple electrochemical cells in which the application of a potential creates dimensional changes in one or more of the electrode materials. The ability to efficiently inject/extract charge without mechanical degradation of the system determines the overall performance possible. It is obvious then that the electrochemical properties of the active component(s) will dictate the level of performance attainable. In most devices with dimensions greater than microns, performance is limited by the electrical connection made to the device. In this work, a thin helical wire interconnect has been used in the construction of tubular electromechanical actuators based on polypyrrole. The interconnection results in greater strain (up to 5 percent) and strain rates (in excess of 10 percent s~(-1)) when the actuator is used in the axial strain mode.
机译:可以将基于导电聚合物的机电致动器视为简单的电化学电池,其中施加电势会在一种或多种电极材料中产生尺寸变化。有效注入/提取电荷而不会造成系统机械性能下降的能力决定了整体性能。显然,活性成分的电化学性质将决定可达到的性能水平。在大多数尺寸大于微米的设备中,性能受到与设备进行电连接的限制。在这项工作中,已经在基于聚吡咯的管状机电致动器的构造中使用了细螺旋线互连。当将致动器用于轴向应变模式时,互连会导致更大的应变(高达5%)和应变率(超过10%s〜(-1))。

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