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Novel highly sensitive and wearable pressure sensors from conductive three-dimensional fabric structures

机译:由导电三维织物结构制成的新型高灵敏且可穿戴的压力传感器

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Pressure sensors based on three-dimensional fabrics have all the excellent properties of the textile substrate: excellent compressibility, good air permeability and moisture transmission ability, which will find applications ranging from the healthcare industry to daily usage. In this paper, novel pressure sensors based on 3D spacer fabrics have been developed by a proposed multi-coating method. By this coating method, carbon black can be coated uniformly on the silicon elastomer which is attached and slightly cured on the 3D fabric surface beforehand. The as-made pressure sensors have good conductivity and can measure external pressure up to 283 kPa with an electrical conductivity range of 9.8 k Omega. The sensitivity of 3D fabric pressure sensors can be as high as 50.31x10(-3) kPa(-1), which is better than other textile based pressure sensors. When the as-made sensors are pressed, their electrical resistance will decrease because of more conductive connections and bending of fibers in the spacer layer. The sensing mechanism related to fiber bending has been explored by using an equivalent resistance model. The newly developed 3D sensor devices can be designed to exhibit different sensing performances by simply changing the structures of fabric substrate, which endows this kind of device more flexibility in related applications.
机译:基于三维织物的压力传感器具有纺织基材的所有优异性能:出色的可压缩性,良好的透气性和透湿性,将在医疗保健行业和日常使用中找到广泛的应用。在本文中,通过提出的多层涂覆方法已经开发了基于3D间隔织物的新型压力传感器。通过这种涂覆方法,可以将炭黑均匀地涂覆在预先附着在3D织物表面并稍稍固化的硅弹性体上。制成的压力传感器具有良好的电导率,可以测量高达283 kPa的外部压力,电导率范围为9.8 k Omega。 3D织物压力传感器的灵敏度可以高达50.31x10(-3)kPa(-1),比其他基于纺织品的压力传感器要好。当按压制成的传感器时,由于更多的导电连接和间隔层中纤维的弯曲,其电阻将降低。通过使用等效电阻模型探索了与光纤弯曲有关的传感机制。新开发的3D传感器设备可以设计为通过简单地改变织物基板的结构来表现出不同的传感性能,从而使这种设备在相关应用中具有更大的灵活性。

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