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Integrated sensing for ionic polymer-metal composite actuators using PVDF thin films

机译:使用PVDF薄膜的离子聚合物-金属复合执行器的集成感测

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摘要

Compact sensing methods are desirable for ionic polymer - metal composite (IPMC) actuators in microrobotic and biomedical applications. In this paper a novel sensing scheme for IPMC actuators is proposed by bonding an IPMC and a PVDF ( polyvinylidene fluoride) thin film with an insulating layer in between. The insulating layer thickness is properly designed to minimize the stiffness of the composite IPMC/PVDF structure while reducing the electrical feedthrough coupling between the IPMC and PVDF. A distributed circuit model is developed to effectively represent the electrical coupling dynamics, which is then used in real-time compensation for extraction of the true sensing signal. Experimental results show that the developed IPMC/PVDF structure, together with the compensation algorithm, can perform effective, simultaneous actuation and sensing. As the first application, this sensori-actuator has been successfully used for performing and monitoring open- loop micro-injection of living Drosophila embryos.
机译:对于微机器人和生物医学应用中的离子聚合物-金属复合材料(IPMC)致动器,需要紧凑的传感方法。在本文中,通过将IPMC和PVDF(聚偏二氟乙烯)薄膜粘结在一起,并在绝缘层与绝缘层之间建立了一种新颖的IPMC执行器传感方案。绝缘层的厚度经过适当设计,可以最大程度地降低IPMC / PVDF复合结构的刚度,同时减少IPMC和PVDF之间的电馈通耦合。开发了分布式电路模型以有效表示电耦合动力学,然后将其用于实时补偿中以提取真实感测信号。实验结果表明,所开发的IPMC / PVDF结构以及补偿算法可以实现有效的,同时的致动和传感。作为第一个应用程序,该传感器致动器已成功用于执行和监测活的果蝇胚胎的开环显微注射。

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