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一种使用纳米纤维可逆互锁的灵活且高灵敏度的应变计传感器。

A flexible and highly sensitive strain-gauge sensor using reversible interlocking of nanofibres.

机构信息

World Class University Program on Multiscale Mechanical Design, Seoul National University, Seoul 151-742, Korea.

出版信息

Nat Mater. 2012 Sep;11(9):795-801. doi: 10.1038/nmat3380.

Abstract

Flexible skin-attachable strain-gauge sensors are an essential component in the development of artificial systems that can mimic the complex characteristics of the human skin. In general, such sensors contain a number of circuits or complex layered matrix arrays. Here, we present a simple architecture for a flexible and highly sensitive strain sensor that enables the detection of pressure, shear and torsion. The device is based on two interlocked arrays of high-aspect-ratio Pt-coated polymeric nanofibres that are supported on thin polydimethylsiloxane layers. When different sensing stimuli are applied, the degree of interconnection and the electrical resistance of the sensor changes in a reversible, directional manner with specific, discernible strain-gauge factors. The sensor response is highly repeatable and reproducible up to 10,000 cycles with excellent on/off switching behaviour. We show that the sensor can be used to monitor signals ranging from human heartbeats to the impact of a bouncing water droplet on a superhydrophobic surface.

摘要

灵活的皮肤附着应变计传感器是开发能够模拟人体皮肤复杂特性的人工系统的重要组成部分。通常,这种传感器包含许多电路或复杂的分层矩阵阵列。在这里,我们提出了一种用于灵活和高灵敏度应变传感器的简单结构,该传感器能够检测压力、剪切和扭转。该装置基于两个互锁的高纵横比 Pt 涂层聚合物纳米纤维阵列,这些阵列支撑在薄的聚二甲基硅氧烷层上。当施加不同的传感刺激时,传感器的互连程度和电阻以可识别的应变计因子的可逆、定向方式发生变化。传感器的响应在高达 10000 次循环的情况下具有高度的可重复性和再现性,并且具有出色的开关性能。我们表明,该传感器可用于监测从人类心跳到弹跳水滴撞击超疏水表面的信号。

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