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首页> 外文期刊>ACS applied materials & interfaces >Controllably Enhancing Stretchability of Highly Sensitive Fiber-Based Strain Sensors for Intelligent Monitoring
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Controllably Enhancing Stretchability of Highly Sensitive Fiber-Based Strain Sensors for Intelligent Monitoring

机译:可控地增强高度敏感纤维的应变传感器的智能监测的拉伸性

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摘要

Functional strain sensing is essential to develop health monitoring and Internet of Things. The performance of either narrow sensing range or low sensitivity restricts strain sensors in a wider range of future applications. Attaining both high sensitivity and wide sensing range of a strain sensor remains challenging. Herein, a cluster-type microstructures strategy is proposed for engineering high stretchability of highly sensitive strain sensor. The resistance change of the strain sensor is determined by the deformation of the cluster-type microstructures from close arrangement to orderly interval state during being stretched. Because of the unique geometric structure and conductive connection type of the sensing material, the strain sensor achieves a considerable performance that features both high sensitivity (gauge factor up to 2700) and high stretchability (sensing range of 160% strain). Fast response time and long-term stability are other characteristics of the strain sensor. Monitoring of multiple limb joints and controlling of audible and visual devices are demonstrated as the proof-of-concept abilities of the strain sensor. This study not only puts forward a novel design thought of strain sensor but also offers considerable insights into its potential value toward burgeoning fields including but not limited to real-time health monitoring and intelligent controls.
机译:功能应变感测对于开发健康监测和事物互联网至关重要。窄感测范围或低灵敏度的性能限制了更广泛的未来应用中的应变传感器。达到高灵敏度和宽感应范围的应变传感器仍然具有挑战性。这里,提出了一种用于高敏感应变传感器的高可拉伸性的簇型微结构策略。应变传感器的电阻变化由簇型微结构的变形从闭合布置到有序的间隔状态在被拉伸期间。由于传感材料的独特的几何结构和导电连接类型,应变传感器实现了具有相当大的性能,可具有高灵敏度(仪表因子高达2700)和高拉伸性(感测为160%应变的范围)。快速响应时间和长期稳定性是应变传感器的其他特性。监测多个肢体关节和控制可听和视觉设备的控制被证明是应变传感器的概念证明能力。这项研究不仅提出了一种新颖的应变传感器设计思想,而且还提供了相当大的见解,以其对蓬勃发展的领域的潜在价值,包括但不限于实时健康监测和智能控制。

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