首页> 外文会议>International Conference on Solid-State Sensors, Actuators and Microsystems & Eurosensors XXXIII >A Natural Wind-Driven 3D-Printed Miniaturized and Fully Enclosed Hybrid Nanogenerator Using Flexible Blade Structure for Subway Tunnel Applications
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A Natural Wind-Driven 3D-Printed Miniaturized and Fully Enclosed Hybrid Nanogenerator Using Flexible Blade Structure for Subway Tunnel Applications

机译:天然风驱动的3D打印小型化和全封闭式混合纳米发电机,采用柔性叶片结构,适用于地铁隧道

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We have proposed and experimentally validated a natural wind-driven hybrid nanogenerator (WH-NG) based on triboelectric nanogenerator (TENG) and electromagnetic generator (EMG) for efficiently scavenging ambient wind energy. The flexible-blade based hybridization mode TENG and multipole disc-magnets based EMG were introduced into a single rotating system to obtain a high-power output under low wind speed. Nano-structure modified PTFE and Al surfaces were utilized as triboelectric materials to increase the output power of the TENG. Thus, the output features of TENG with high voltage and low current were compensated by combining with opposite performance of EMG to develop a high-performance hybrid nanogenerator. A 3D-printed WH-NG delivered a maximum output power of 245 mW across the matching load resistance of 2 kΩ at 6 m/s of natural wind speed. The quick capacitor charging capability and fully enclosed structure of the WH-NG prove the feasibility for the practical applications.
机译:我们已经提出并通过实验验证了基于摩擦电纳米发电机(TENG)和电磁发电机(EMG)的自然风力混合纳米发电机(WH-NG),以有效地清除周围的风能。将基于柔性叶片的混合模式TENG和基于多极盘式磁体的EMG引入到单个旋转系统中,以在低风速下获得高功率输出。纳米结构改性的PTFE和Al表面被用作摩擦电材料,以增加TENG的输出功率。因此,通过结合EMG的相反性能来补偿TENG的高电压和低电流输出特性,从而开发出高性能的混合纳米发电机。 3D打印的WH-NG在自然风速为6 m / s时,在匹配的2kΩ负载电阻上可提供245 mW的最大输出功率。 WH-NG的快速电容器充电能力和全封闭结构证明了其在实际应用中的可行性。

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