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采用导电碳脂的带嵌入式传感器的气动波纹管执行器。

Pneumatic Bellow Actuator with Embedded Sensor Using Conductive Carbon Grease.

作者信息

Moreno David, Narvaez Diana, Newell Brittany

机构信息

Polytechnic Institute, School of Engineering Technology, Purdue University, West Lafayette, IN 47907, USA.

出版信息

Sensors (Basel). 2024 Aug 21;24(16):5403. doi: 10.3390/s24165403.

Abstract

The present work demonstrates the manufacturing process of a pneumatic bellow actuator with an embedded sensor, utilizing a novel manufacturing approach through the complete use of additive manufacturing techniques, such as direct ink writing (DIW) and traditional fused deposition modeling (FDM) methods. This study is innovative in its integration of a dielectric electroactive polymer (DEAP) structure with sensing electrodes made of conductive carbon grease (CCG), showcasing a unique application of a 3D-printed DEAP with CCG electrodes for combined DEAP sensing and pneumatic actuation. Initial experiments, supported by computational simulations, evaluated the distinct functionality of the DEAP sensor by itself under various pressure conditions. The findings revealed a significant change in capacitance with applied pressure, validating the sensor's performance. After sensor validation, an additive manufacturing process for embedding the DEAP structure into a soft pneumatic actuator was created, exhibiting the system's capability for dual sensing and actuation, as the embedded sensor effectively responded to applied actuation pressure. This dual functionality represents an advancement in soft actuators, especially in applications that require integrated and responsive actuation and sensing capabilities. This work also represents a preliminary step in the development of a 3D-printed dual-modality actuator (pneumatic and electrically activated DEAP) with embedded sensing.

摘要

本研究展示了一种带有嵌入式传感器的气动波纹管执行器的制造过程,采用了一种全新的制造方法,即完全利用增材制造技术,如直接墨水书写(DIW)和传统的熔融沉积建模(FDM)方法。本研究的创新之处在于将介电电活性聚合物(DEAP)结构与由导电碳脂(CCG)制成的传感电极相结合,展示了一种带有CCG电极的3D打印DEAP在DEAP传感与气动驱动相结合方面的独特应用。在计算模拟的支持下,初步实验评估了DEAP传感器在各种压力条件下自身的独特功能。研究结果表明,随着施加压力的变化,电容发生了显著变化,验证了传感器的性能。在传感器验证之后,创建了一种将DEAP结构嵌入软气动执行器的增材制造工艺,展示了该系统的双重传感和驱动能力,因为嵌入式传感器能够有效地响应施加的驱动压力。这种双重功能代表了软执行器的一项进步,特别是在需要集成且响应灵敏的驱动和传感能力的应用中。这项工作还代表了开发一种带有嵌入式传感的3D打印双模态执行器(气动和电激活DEAP)的初步步骤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae90/11359954/39ee12f07e10/sensors-24-05403-g001.jpg

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