论文标题

具有植物启发的多功能,两种方式,无感的动物学

A Plant-Inspired Multifunctional, Two Way, and Fiberless Soft Gripper with Sensorized Kinaesthesia

论文作者

Annabestani, Mohsen, Shabani, Majid, Magalhaes, Samuel Videira, Mondini, Alessio, Mazzolai, Barbara

论文摘要

这项工作提出了一种新的无光纤气动执行器,可以发挥多功能和双向性,并且其嵌入式传感器使其具有自我主敏感能力。该执行器基于采用螺旋压力通道的想法。将受控的输入压力应用到这两个通道中会导致多种变形和驱动。特别是,在通道中施加的单个压力,不平衡压力和平衡压力会导致双向线圈,相反的弯曲和伸长,并在单个单位执行器中伸长。此外,创建了两个U形微通道,通过注入基于凝胶的导电材料,该执行器配备了电阻传感器,这些传感器对从小振荡到较大的伸长率的巨大动态范围有响应。该执行器具有多功能的软抓地力,具有许多有前途的功能,其嵌入式软传感器使其在实际问题中具有更好的可控性。该执行器的多功能性已通过多个实验测试进行了验证,并且我们也证明它在抓住各种对象方面具有巨大的潜力。最后,嵌入式传感器可以区分执行器的主要功能,并且可以扮演独立传感器的作用,也可以像伸展,压力或弯曲传感器一样。

This work presents a new fiberless soft pneumatic actuator that can work multifunctional and bidirectional, and its embedded sensors give it a self-proprioception ability. This actuator works based on the idea of employing helical pressure channels. Applying the controlled input pressures into these two channels causes a variety of deformations and actuation. In particular, single pressure, imbalanced pressures, and balanced pressures applied in the channels cause bidirectional coilings, opposite bendings, and elongation, respectively, in a single unit actuator. Also, two U-shaped microchannels are created, and by injecting a gel-based conductive material, the actuator is equipped with resistive sensors which are responsive to a vast dynamic range from a small oscillation to a large elongation. This actuator has so many promising features as a multifunctional soft gripper, and its embedded soft sensors enable it to have better controllability in real problems. The multifunctionality of this actuator has been validated with several experimental tests, and also we have shown it has excellent potential in gripping a variety of objects. Finally, the embedded sensors can discriminate the main functions of actuators, and also they can play the role of independent sensors as well like a stretch, pressure, or bending sensors.

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