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A Novel All-in-One Manufacturing Process for a Soft Sensor System and its Application to a Soft Sensing Glove

机译:软传感器系统的新型多合一制造工艺及其在软传感手套中的应用

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A sensing glove is an attractive application of wearable devices. Soft sensors are emerging to replace rigid sensing units, especially for wearable sensor systems, due to its inherent softness, flexibility, and stretchability. However, the fabrication process for the soft sensors is usually complex, time-consuming, labor-intensive, and has low production rate. To integrate a sensor system, an assembly process is essential, which may make the system bulky. Moreover, a solution for the electrode parts has rarely been suggested, although a bulky electrode part may obstruct the user's movement and degrade performance of the sensor. Thus, in this study, a novel fabrication process is suggested based on direct ink writing (DIW) of eutectic gallium-indium (EGaIn), which forms all the items in the sensor system from the sensing units, wiring, and the electrode part. A sensing glove for 2D finger motions was fabricated, and its performance was verified in terms of linearity, dynamic response, and accuracy. The sensing glove can be used as an easily-wearable and an intuitive interface to the virtual reality environment.
机译:传感手套是可穿戴设备的有吸引力的应用。由于其固有的柔软性,柔韧性和可拉伸性,软传感器正逐渐取代刚性传感单元,尤其是可穿戴传感器系统。然而,软传感器的制造过程通常是复杂的,费时的,劳动密集的并且生产率低。为了集成传感器系统,组装过程必不可少,这可能会使系统笨重。而且,尽管笨重的电极部件会阻碍用户的运动并降低传感器的性能,但是极少提出用于电极部件的解决方案。因此,在这项研究中,提出了一种基于共晶镓-铟(EGaIn)的直接墨水书写(DIW)的新颖制造工艺,该工艺可从传感单元,布线和电极部分构成传感器系统中的所有项目。制造了用于2D手指运动的感应手套,并在线性,动态响应和准确性方面验证了其性能。感应手套可以用作虚拟现实环境的易于佩戴和直观的界面。

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