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Flexible microstructured pressure sensors: design, fabrication and applications

机译:柔性微结构压力传感器:设计、制造和应用

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摘要

In recent years, flexible pressure sensors have caused widespread concern for their extensive applications in human activity and health monitoring, robotics and prosthesis, as well as human-machine interface. Flexible pressure sensors in these applications are required to have a high sensitivity, large detective limit, linear response, fast response time, and mechanical stability. The mechanisms of capacitive, piezoresistive, and piezoelectric pressure sensors and the strategies to improve their performance are introduced. Sensing layers with microstructures have shown capability to significantly improve the performances of pressure sensors. Various fabrication methods for these structures are reviewed in terms of their pros and cons. Besides, the interference caused by environmental stimuli and internal stress from different directions leads to the infidelity of the signal transmission. Therefore, the anti-interference ability of flexible pressure sensors is highly desired. Several potential applications for flexible pressure sensors are also briefly discussed. Last, we conclude the future challenges for facilely fabricating flexible pressure sensors with high performance and anti-interference ability.
机译:近年来,柔性压力传感器因其在人体活动和健康监测、机器人和假肢以及人机界面方面的广泛应用而引起广泛关注。在这些应用中,柔性压力传感器需要具有高灵敏度、大检测限值、线性响应、快速响应时间和机械稳定性。介绍了电容式、压阻式和压电式压力传感器的机理以及提高其性能的策略。具有微结构的传感层已显示出显著提高压力传感器性能的能力。根据这些结构的各种制造方法的优缺点进行了综述。此外,来自不同方向的环境刺激和内应力造成的干扰导致信号传输的不保真度。因此,柔性压力传感器的抗干扰能力是非常需要的。此外,还简要讨论了柔性压力传感器的几种潜在应用。最后,总结了未来制造具有高性能和抗干扰能力的柔性压力传感器的挑战。

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