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轨道车辆用L型压电俘能结构发电模型及分析
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作者 许承洁 丁亚琦 +2 位作者 彭乐乐 郑树彬 钟倩文 《计算机与数字工程》 2023年第11期2531-2534,共4页
为了实现轨道车辆走行部传感感知设备的自驱动式供电,针对L型压电俘能结构的发电特性进行建模分析及研究,通过对其安装位置进行受力分析,建立了压电俘能结构发电模型。为了验证验证模型的有效性,利用COMSOL有限元软件搭建了仿真模型,并... 为了实现轨道车辆走行部传感感知设备的自驱动式供电,针对L型压电俘能结构的发电特性进行建模分析及研究,通过对其安装位置进行受力分析,建立了压电俘能结构发电模型。为了验证验证模型的有效性,利用COMSOL有限元软件搭建了仿真模型,并与理论模型进行对比,结果表明前六阶输出功率相对误差均小于3%,验证了发电模型的正确性。 展开更多
关键词 轨道车辆 自发电传感 L型压电俘能结构 发电模型
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Self-powered acoustic source Iocator in underwater environment based on organic film triboelectric nano-generator 被引量:4
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作者 Aifang Yu Ming Song +4 位作者 Yan Zhang Yang Zhang Libo Chen Junyi Zhai Zhong Lin Wang 《Nano Research》 SCIE EI CAS CSCD 2015年第3期765-773,共9页
Detecting/sensing targets underwater has very important applications in environmental study, civil engineering and national security. In this paper, an organic-film based triboelectric nanogenerator (TENG) has been ... Detecting/sensing targets underwater has very important applications in environmental study, civil engineering and national security. In this paper, an organic-film based triboelectric nanogenerator (TENG) has been successfully demonstrated for the first time as a self-powered and high sensitivity acoustic sensor to detect underwater targets at low frequencies around 100 Hz. This innovative, cost-effective, simple-design TENG consists of a thin-film-based Cu electrode and a polytetrafluoroethylene (PTFE) film with nanostructures on its surfaces. On the basis of the coupling effect between triboelectrification and electrostatic induction, the sensor generates electrical output signals in response to incident sound waves. Operating at a resonance frequency of 110 Hz, under an acoustic pressure of 144.2 dBspc, the maximum open-circuit voltage and short-circuit current of the generator can respectively reach 65 V and 32 ~A underwater. The directional dependence pattern has a bi-directional shape with a total response angle of 60~. Its sensitivity is higher than -185 dB in the frequency range from 30 Hz to 200 Hz. The highest sensitivity is -146 dB at resonance frequency. The three-dimensional coordinates of an acoustic source were identified by four TENGs, self-powered active sensors, and the location of the acoustic source was determined with an error about 0.2 m. This study not only expands the application fields of TENGs from the atmosphere to water, but also shows the TENG is a promising acoustic source locator in underwater environments. 展开更多
关键词 triboelectricnanogenerator self-powered acousticsource locator UNDERWATER three dimensionalcoordinate
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A self-powered gas sensor based on PDMS/Ppy triboelectric-gas-sensing arrays for the real-time monitoring of automotive exhaust gas at room temperature 被引量:6
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作者 Haoxuan He Mengyang Zhang +3 位作者 Tianming Zhao Hui Zeng Lili Xing Xinyu Xue 《Science China Materials》 SCIE EI CSCD 2019年第10期1433-1444,共12页
A new self-powered active gas sensor for realtime monitoring of automotive exhaust gas was devised.The pipe-shaped device was fabricated from polydimethylsiloxane/polypyrrole(PDMS/Ppy)triboelectric gas-sensing unit ar... A new self-powered active gas sensor for realtime monitoring of automotive exhaust gas was devised.The pipe-shaped device was fabricated from polydimethylsiloxane/polypyrrole(PDMS/Ppy)triboelectric gas-sensing unit arrays.The gas-sensing units can actively convert the mechanical energy of gas flow into a triboelectric current.The output current signal depends on the species and concentrations of the target chemical gases(CO,NH3,NO)in the gas flow,and thus can be used as a sensing signal.The device consists of seven gas-sensing units with different Ppy derivatives.As the different sensing units respond to the gases in different ways,the device can differentiate between gas species.The working mechanism is attributed to the coupling effect between the triboelectric effect of PDMS/Ppy and the gas-sensing properties of Ppy.The device can be installed in the tailpipe of an automobile,and can thus analyze the exhaust gas in real time without the need for any external electrical power.The results of the present study spur a new research direction for the development of automotive exhaust gas monitoring systems,thus playing an important role in the detection of air pollution. 展开更多
关键词 SELF-POWERED gas sensing TRIBOELECTRIFICATION automotive exhaust gas coupling effect
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