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Modelling and performance enhancement of a linear actuation mechanism using conducting polymers

机译:使用导电聚合物的线性驱动机构的建模和性能增强

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摘要

In this paper, we report on our investigation into modelling and performance enhancement of a linear actuation system based on cantileveredtype conducting polymer actuators, which can operate in air and aqueous media. We have employed the model to predict the linear displacement and force output of the actuation system, and to determine the optimum values of the system design parameters. The linear actuation system is a five bar parallel mechanism, articulated with two polymer actuators. Kinematic and force analyses of the mechanism including numerical results are presented, and its payload handling ability was experimentally evaluated. The experimental results prove that it is possible to generate an accurate linear movement and a corresponding rectilinear force from this mechanism. This mechanism can be employed as a motion and force transmission mechanism, which not only has a light weight, but also consumes a small electrical power.
机译:在本文中,我们报告了对基于悬臂式导电聚合物致动器的线性致动系统的建模和性能增强的研究报告,该致动器可以在空气和水性介质中运行。我们已经使用该模型来预测致动系统的线性位移和力输出,并确定系统设计参数的最佳值。线性致动系统是五杆并联机构,与两个聚合物致动器铰接。对该机构进行了运动学和力分析,包括数值结果,并通过实验评估了其有效载荷处理能力。实验结果证明,可以从该机构产生精确的线性运动和相应的直线力。该机构可以用作运动力传递机构,其不仅重量轻,而且消耗的电力少。

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