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A Sensitive Flexible Strain Sensor via Anisotropy Microstructured Sensitized Surface Resistive Change for Human Motion Monitoring

机译:一种敏感的柔性应变传感器,通过各向异性微结构敏感的人体运动监测表面电阻变化

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We reported here a sensitive flexible strain sensor via anisotropy microstructured sensitized surface resistance change. The strain sensor consists of a flexible elastomer and a thin Ag film coated on the microstructures from laser-treated elastomeric surface. The laser scanned microstructures on the surface and led to an anisotropy crack propagation of the metallic conducting layer under strain as sensing mechanism. The developed strain sensor possessed GFs as high as 49 (ε<2%) and 3,580 (4%<∊<7%) with a good linear relationship. Sensing performances of the sensor suggested that laser-assisted fabrication is an effective way to improve sensitivity of strain sensors. The anisotropy microstructured strain sensor mounted on the wrist and the throat successfully detected the motion in real time indicating the potential in human motion monitoring.
机译:在此报道了通过各向异性微结构敏化表面电阻变化的敏感柔性应变传感器。 应变传感器由柔性弹性体和薄膜组成,涂覆在激光处理的弹性体表面上的微观结构上。 激光扫描表面上的微观结构,并导致应变为感测机构的金属导电层的各向异性裂纹传播。 发育的应变传感器具有高达49(ε<2%)和3,580(4%<ε<7%)的GFS,具有良好的线性关系。 传感器的感测性能表明激光辅助制造是提高应变传感器灵敏度的有效方法。 安装在手腕上的各向异性微结构化应变传感器和喉部成功地检测到实时的运动,表明人类运动监测的潜力。

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