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一种具有折纸启发式自折叠并联机构的微型软传感器。

A Miniature Soft Sensor with Origami-Inspired Self-Folding Parallel Mechanism.

作者信息

Shi Yongqi, Wang Gang, Sun Wenguang, Ya Yunfeng, Liu Shuhan, Fang Jiongjie, Yuan Feiyang, Duo Youning, Wen Li

机构信息

School of Mechanical Engineering and Automation, Beihang University, Beijing 100191, China.

Beijing Advanced Innovation Center for Biomedical Engineering, Beihang University, Beijing 100191, China.

出版信息

Micromachines (Basel). 2022 Jul 28;13(8):1188. doi: 10.3390/mi13081188.

Abstract

Miniature soft sensors are crucial for the perception of soft robots. Although centimeter-scale sensors have been well developed, very few works addressed millimeter-scale, three-dimensional-shaped soft sensors capable of measuring multi-axis forces. In this work, we developed a millimeter-scale (overall size of 6 mm × 11 mm × 11 mm) soft sensor based on liquid metal printing technology and self-folding origami parallel mechanism. The origami design of the sensor enables the soft sensor to be manufactured within the plane and then fold into a three-dimensional shape. Furthermore, the parallel mechanism allows the sensor to rotate along two orthogonal axes. We showed that the soft sensor can be self-folded (took 17 s) using a shape-memory polymer and magnets. The results also showed that the sensor prototype can reach a deformation of up to 20 mm at the tip. The sensor can realize a measurement of external loads in six directions. We also showed that the soft sensor enables underwater sensing with a minimum sensitivity of 20 mm/s water flow. This work may provide a new manufacturing method and insight into future millimeter-scale soft sensors for bio-inspired robots.

摘要

微型软传感器对于软机器人的感知至关重要。尽管厘米级传感器已经得到了很好的发展,但很少有研究涉及能够测量多轴力的毫米级三维形状软传感器。在这项工作中,我们基于液态金属打印技术和自折叠折纸平行机构开发了一种毫米级(整体尺寸为6毫米×11毫米×11毫米)的软传感器。传感器的折纸设计使软传感器能够在平面内制造,然后折叠成三维形状。此外,平行机构允许传感器沿两个正交轴旋转。我们展示了该软传感器可以使用形状记忆聚合物和磁铁进行自折叠(耗时17秒)。结果还表明,传感器原型在尖端可达到高达20毫米的变形。该传感器能够实现六个方向的外部载荷测量。我们还展示了该软传感器能够进行水下传感,水流最小灵敏度为20毫米/秒。这项工作可能为未来受生物启发的机器人的毫米级软传感器提供一种新的制造方法和思路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b1a/9413114/98e9c567b20c/micromachines-13-01188-g001.jpg

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