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Levitating oscillator-based triboelectric nanogenerator for harvesting from rotational motion and sensing seismic oscillation

机译:基于振荡器的摩擦纳米电磁炉用于收获旋转运动和感应地震振荡

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Ever-rising skyscrapers and the growing number of densely populated large cities face an increased danger from earthquakes. To lessen the risk of this natural disaster, critical facilities must be equipped by a reliable warning system. However, conventional sensors which detect the velocity and acceleration of the seismic vibrations, consumes an external power, which cannot be placed in many buildings due to limitations in electricity supply. In this work, a self-powered seismic sensor is fabricated using the three-dimensional printing technology. The proposed device can be operated based on the triboelectricity, which converts an external mechanical energy into an electrical energy. The proposed device exhibits an exceptional behavior of a friction-free due to its sophisticated designed structure with a levitating oscillator. The fundamental parameters representing the device performance are systematically analyzed with various operation mode. Water-assisted oxidized Al electrodes allow full-contact with the polytetrafluoroethylene triboelectric oscillator film, subsequently, produce the highest values of output parameter as follows; an open-circuit voltage of 29.44 V, a short-circuit current of 204 nA, and a peak power density of 2.501 mW/m(2) at a load resistance of 50 M Omega. Frequency reversibility is also demonstrated from the frequency response of the short-circuit current during the operation in lateral-contact mode. Because of inherently friction-free characteristics of the proposed device, this device shows high sensitivity, low sensing limit, and long residual signal, which is experimentally verified. In order to test the sensing ability of the device, artificial seismic vibrations are applied with vertical forces of 4 N and 2.4 N. An alert software program displays the sensing ability of the device with the signals over 1 V, which is the threshold voltage. The stability of the device in humid conditions and its durability for 3100 s in the output voltage measurement represent the possibility of this device as a reliable sensor. Due to the simple three-dimensional printing technology and its inherently friction-free characteristics, the proposed device can be employed as a self-powered sensor capable of warning about dangerous earthquake disasters.
机译:不断上升的摩天大楼和越来越多的人口稠密的大城市面临地震的危险。为了减少这种自然灾害的风险,必须通过可靠的警告系统配备关键的设施。然而,检测地震振动速度和加速度的传统传感器消耗外部功率,由于电力供应的限制,不能放置在许多建筑物中。在这项工作中,使用三维印刷技术制造自动力地震传感器。可以基于摩擦电性操作所提出的装置,其将外部机械能转换为电能。由于其具有悬浮振荡器的复杂设计的结构,所提出的装置具有不摩擦的特殊行为。具有各种操作模式的表示设备性能的基本参数。水辅助氧化Al电极允许与聚四氟乙烯摩擦电振荡器膜完全接触,随后产生如下的最高输出参数值;开路电压为29.44V,短路电流为204 NA,峰值功率密度为2.501mW / m(2),负载电阻为50米ω。还可以从横向接触模式下操作期间的短路电流的频率响应来证明频率可逆性。由于所提出的装置固有的无摩擦特性,该装置显示出高灵敏度,低传感极限和长的残余信号,这是通过实验验证的。为了测试装置的感测能力,施加人工地震振动,施加4 n和2.4 n的垂直力。警报软件程序显示设备的感测能力,其具有超过1V的信号,这是阈值电压。在输出电压测量中,在输出电压测量中为3100S的装置在潮湿条件下的稳定性表示该装置作为可靠传感器的可能性。由于简单的三维印刷技术及其固有的无摩擦特性,所提出的装置可以用作能够警告危险地震灾害的自给自足传感器。

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