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Highly Stretchable, Global, and Distributed Local Strain Sensing Line Using GaInSn Electrodes for Wearable Electronics

机译:使用用于可穿戴电子设备的GaInSn电极的高度可拉伸,全局且分布式的局部应变感应线

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摘要

For identifying human or finger movement, it is necessary to sense subtle movements at multiple points, including the local strain and global deformation simultaneously; however, this has not yet been realized. Therefore, a highly stretchable, global, and distributed local strain sensing electrode made of GaInSn and polydimethylsiloxane is developed for wearable devices. To investigate the electrical properties of multiple sections of the GaInSn electrode when stretching, tensile, cyclic, and three-point-bending tests are performed. The results demonstrate that the electrode can withstand a strain up to 50% and has little hysteresis without any delay. Moreover, the distributed local strain and global strain can be simultaneously measured using just a single electrode line. Finally, a prototype of a data glove as an application of the strain sensing line is manufactured, and it is demonstrated that the folding state of fingers could be identified. The proposed technology may allow the creation of a lightweight master hand manipulator or 3D data entry device.
机译:为了识别人或手指的运动,有必要在多个点上感知微妙的运动,包括同时发生局部应变和整体变形。但是,这尚未实现。因此,开发了由GaInSn和聚二甲基硅氧烷制成的高度可拉伸的,全局的和分布式的局部应变感测电极,用于可穿戴设备。为了研究进行拉伸,拉伸,循环和三点弯曲测试时,GaInSn电极多个部分的电性能。结果表明,该电极可以承受高达50%的应变,并且几乎没有滞后,几乎没有滞后。而且,仅使用一条电极线就可以同时测量分布的局部应变和整体应变。最终,制造出作为应变感测线的应用的数据手套的原型,并且证明了可以识别手指的折叠状态。所提出的技术可以允许创建轻量级的主手操纵器或3D数据输入设备。

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