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Tactile-Direction-Sensitive and Stretchable Electronic Skins Based on Human-Skin-Inspired Interlocked Microstructures

机译:基于人皮肤启发的互锁微结构的触觉敏感和可伸缩电子皮肤

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摘要

Stretchable electronic skins with multidirectional force-sensing capabilities are of great importance in robotics, prosthetics, and rehabilitation devices. Inspired by the interlocked microstructures found in epidermal-dermal ridges in human skin, piezoresistive interlocked microdome arrays are employed for stress-direction-sensitive, stretchable electronic skins. Here we show that these arrays possess highly sensitive detection capability of various mechanical stimuli including normal, shear, stretching, bending, and twisting forces. Furthermore, the unique geometry of interlocked microdome arrays enables the differentiation of various mechanical stimuli because the arrays exhibit different levels of deformation depending on the direction of applied forces, thus providing different sensory output patterns. In addition, we show that the electronic skins attached on human skin in the arm and wrist areas are able to distinguish various mechanical stimuli applied in different directions and can selectively monitor different intensities and directions of air flows and vibrations.
机译:具有多向力感测功能的可拉伸电子皮肤在机器人技术,假肢和康复设备中非常重要。受人体皮肤表皮-皮脊中互锁微结构的启发,压阻互锁微球罩阵列用于应力方向敏感的可拉伸电子皮肤。在这里,我们表明这些阵列具有对各种机械刺激(包括法向,剪切,拉伸,弯曲和扭曲力)的高度灵敏的检测能力。此外,互锁微球罩阵列的独特几何形状能够区分各种机械刺激,因为该阵列根据作用力的方向表现出不同程度的变形,从而提供了不同的感官输出模式。此外,我们显示出附着在手臂和腕部区域的人体皮肤上的电子皮肤能够区分在不同方向上施加的各种机械刺激,并且可以选择性地监视气流和振动的不同强度和方向。

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