Zou Yongjiu, Sun Minzheng, Zhang Xinyu, Wang Junpeng, Li Fangming, Dong Fangyang, Zhao Zhenhang, Du Taili, Ji Yulong, Sun Peiting, Xu Minyi
Dalian Key Lab of Marine Micro/Nano Energy and Self-Powered Systems, Marine Engineering College, Dalian Maritime University, Dalian, 116026, China.
Key Laboratory of Roads and Railway Engineering Safety Control, Ministry of Education, Shijiazhuang Tiedao University, Shijiazhuang, 050043, China.
Small. 2024 Aug;20(32):e2309759. doi: 10.1002/smll.202309759. Epub 2024 Mar 21.
Vibration sensors for continuous and reliable condition monitoring of mechanical equipment, especially detection points of curved surfaces, remain a great challenge and are highly desired. Herein, a highly flexible and adaptive triboelectric vibration sensor for high-fidelity and continuous monitoring of mechanical vibration conditions is proposed. The sensor is entirely composed of flexible materials. It consists of a conductive sponge-silicone layer and a fluorinated ethylene propylene film. It can detect vibration acceleration of 5 to 50 m s and vibration frequency of 10 to 100 Hz. It has strong robustness and stability, and the output performance barely changes after the durability test of 168 000 working cycles. Additionally, the flexible sensor can work even when the detection point of the mechanical equipment is curved, and the linear fit of the output voltage and acceleration is very close to that when the detection point is flat. Finally, it can be applied to monitoring the working condition of blower and vehicle engine, and can transmit vibration signal to mobile phone application through Wi-Fi module for real-time monitoring. The flexible triboelectric vibration sensor is expected to provide a practical paradigm for smart, green, and sustainable wireless sensor system in the era of Internet of Things.
用于机械设备连续可靠状态监测的振动传感器,尤其是曲面检测点的振动传感器,仍然是一个巨大的挑战,人们对此有强烈需求。在此,提出了一种用于高保真连续监测机械振动状态的高柔性自适应摩擦电振动传感器。该传感器完全由柔性材料组成。它由导电海绵 - 硅酮层和氟化乙丙烯薄膜组成。它能够检测5至50 m s的振动加速度和10至100 Hz的振动频率。它具有很强的鲁棒性和稳定性,经过168000个工作循环的耐久性测试后,输出性能几乎没有变化。此外,即使机械设备的检测点是弯曲的,该柔性传感器也能工作,并且输出电压与加速度的线性拟合与检测点为平面时非常接近。最后,它可应用于监测鼓风机和车辆发动机的工作状态,并可通过Wi-Fi模块将振动信号传输到手机应用程序进行实时监测。这种柔性摩擦电振动传感器有望为物联网时代的智能、绿色和可持续无线传感器系统提供一种实用范例。