arXiv:2505.24645cs.ROphysics.app-ph2025-05

一款可同时感知持续压力与瞬时冲击的自供电传感器。

Intrinsic static/dynamic triboelectric pressure sensor for continuous and event-triggered control

  • 通过微尺度与大尺度分离实现静动态压力传感
  • 静态灵敏度达34.7 V/kPa,动态达48.4 V/kPa,检测限低至6.13 Pa
  • 适用于人机交互中的比例抓握与手势通信

传统压力传感器通常需集成两种机制以分别感知静态和动态刺激,限制了高保真人机接口的发展。本文提出一种内在式静/动态摩擦电传感器(iSD Sensor),可通过直流/交流信号解耦策略可靠感知连续静态压力与瞬时机械冲击。采用疏水性膨胀聚四氟乙烯(ePTFE)与弹性导电海绵配对,形成压力自适应摩擦界面:微尺度分离用于静态压力感知,大尺度分离用于动态压力感知。结合电荷激励策略,静态模式下电压输出提升25倍,动态模式提升15倍。利用三维梯度导电海绵结构,传感器在低于1.8 kPa的低压下实现静态灵敏度34.7 V/kPa、动态灵敏度48.4 V/kPa,检测极限低至6.13 Pa。该传感器可感知人体手部施加的连续压力与瞬时冲击,实现机器人手臂的比例抓握控制及基于触发的动态手语通信。本工作推动高灵敏度、自供电压力传感器向智能闭环人机交互发展。

原文摘要 · Abstract (English)

Conventional pressure sensors often integrate two distinct mechanisms to detect static and dynamic stimuli, hindering the development of high fidelity human-machine interfaces. Here, we present an intrinsic static/dynamic triboelectric sensor (iSD Sensor) capable of reliably perceiving both continuous static pressure and transient mechanical shocks through a DC/AC signal decoupling strategy. By pairing hydrophobic expanded polytetrafluoroethylene (ePTFE) with elastic conductive sponge, a pressure-adaptive triboelectric interface is formed, where microscale and large-scale separations enable static and dynamic pressure sensing, respectively. Furthermore, by employing a charge excitation strategy, the device delivers enhanced voltage outputs over 25X in static and 15X in dynamic modes. Combined with a 3D gradient conductive sponge structure, the sensor achieves multi-region sensitivities of 34.7 V/kPa (static) and 48.4 V/kPa (dynamic) under low pressure (less than 1.8 kPa), and a detection limit as low as 6.13 Pa. By perceiving continuous static pressure and transient shocks applied by the human hand, the iSD Sensor enables robotic arm control via proportional grasping and dynamic, trigger-based sign language communication. This work advances high-sensitivity, self-powered pressure sensors toward intelligent, closed-loop human-machine interaction.

压力传感器摩擦电人机交互自供电

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