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Bend stretch and touch: Locating a finger on an actively deformed transparent sensor array

机译:弯曲拉伸和触摸:将手指放在主动变形的透明传感器阵列上

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摘要

The development of bendable, stretchable, and transparent touch sensors is an emerging technological goal in a variety of fields, including electronic skin, wearables, and flexible handheld devices. Although transparent tactile sensors based on metal mesh, carbon nanotubes, and silver nanowires demonstrate operation in bent configurations, we present a technology that extends the operation modes to the sensing of finger proximity including light touch during active bending and even stretching. This is accomplished using stretchable and ionically conductive hydrogel electrodes, which project electric field above the sensor to couple with and sense a finger. The polyacrylamide electrodes are embedded in silicone. These two widely available, low-cost, transparent materials are combined in a three-step manufacturing technique that is amenable to large-area fabrication. The approach is demonstrated using a proof-of-concept 4 × 4 cross-grid sensor array with a 5-mm pitch. The approach of a finger hovering a few centimeters above the array is readily detectable. Light touch produces a localized decrease in capacitance of 15%. The movement of a finger can be followed across the array, and the location of multiple fingers can be detected. Touch is detectable during bending and stretch, an important feature of any wearable device. The capacitive sensor design can be made more or less sensitive to bending by shifting it relative to the neutral axis. Ultimately, the approach is adaptable to the detection of proximity, touch, pressure, and even the conformation of the sensor surface.
机译:可弯曲,可拉伸和透明触摸传感器的开发是包括电子皮肤,可穿戴设备和柔性手持设备在内的许多领域的新兴技术目标。尽管基于金属网,碳纳米管和银纳米线的透明触觉传感器演示了在弯曲配置下的操作,但我们提出了一种将操作模式扩展到感应手指接近的技术,包括在主动弯曲甚至伸展过程中的轻触。这是使用可拉伸的离子导电水凝胶电极完成的,该电极将电场投射到传感器上方以与手指耦合并感应手指。聚丙烯酰胺电极嵌入硅树脂中。将这两种广泛使用的低成本透明材料组合成适合大面积制造的三步制造技术。使用概念验证的5毫米间距的4×4交叉网格传感器阵列对此方法进行了演示。手指悬停在阵列上方几厘米的方法很容易检测到。轻触会导致电容局部降低15%。可以在整个阵列上跟踪手指的移动,并且可以检测多个手指的位置。在弯曲和拉伸期间可检测到触摸,这是任何可穿戴设备的重要功能。通过相对于中性轴移动电容传感器设计,可以使其对弯曲或多或少敏感。最终,该方法适用于检测接近度,触摸,压力甚至传感器表面的构造。

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