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能够从多种机械能来源收集能量的模块式摩擦纳米发电机

Module-Type Triboelectric Nanogenerators Capable of Harvesting Power from a Variety of Mechanical Energy Sources.

作者信息

Shin Jaehee, Ji Sungho, Yoon Jiyoung, Park Jinhyoung

机构信息

School of Mechatronics Engineering, Korea University of Technology & Education, Cheonan 1600, Chungjeolro, Korea.

Safety System R&D Group, Korea Institute of Industrial Technology, 320 Techno sunhwan-ro, Yuga-myeon, Daegu 42994, Dalseong-gun, Korea.

出版信息

Micromachines (Basel). 2021 Aug 29;12(9):1043. doi: 10.3390/mi12091043.

Abstract

In this study, we propose a module-type triboelectric nanogenerator (TENG) capable of harvesting electricity from a variety of mechanical energy sources and generating power from diverse forms that fit the modular structure of the generator. The potential energy and kinetic energy of water are used for the rotational motion of the generator module, and electricity is generated by the contact/separation generation mode between the two triboelectric surfaces inside the rotating TENG. Through the parametric design of the internal friction surface structure and mass ball, we optimized the output of the proposed structure. To magnify the power, experiments were conducted to optimize the electrical output of the series of the TENG units. Consequently, outputs of 250 V and 11 μA were obtained when the angle formed between the floor and the housing was set at 0° while nitrile was set as the positively charged material and the frequency was set at 7 Hz. The electrical signal generated by the module-type TENG can be used as a sensor to recognize the strength and direction of various physical quantities, such as wind and earthquake vibrations.

摘要

在本研究中,我们提出了一种模块式摩擦纳米发电机(TENG),它能够从各种机械能来源收集电能,并从适合发电机模块化结构的多种形式中产生电力。水的势能和动能用于发电机模块的旋转运动,通过旋转TENG内部两个摩擦电表面之间的接触/分离发电模式来发电。通过对内部摩擦表面结构和质量球的参数设计,我们优化了所提出结构的输出。为了放大功率,进行了实验以优化TENG单元系列的电输出。因此,当地板与外壳之间形成的角度设置为0°,同时将腈作为带正电的材料且频率设置为7 Hz时,获得了250 V和11 μA的输出。模块式TENG产生的电信号可用作传感器,以识别各种物理量(如风和地震振动)的强度和方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/29bf/8469907/51c1b1acf210/micromachines-12-01043-g001.jpg

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