Hwang Hee Jae, Jung Yeonseok, Choi Kyungwho, Kim Dongseob, Park Jinhyoung, Choi Dukhyun
Department of Mechanical Engineering, Kyung Hee University, Yongin, Korea.
New Transportation Innovative Research Center, Korea Railroad Research Institute, Uiwang-si, Korea.
Sci Technol Adv Mater. 2019 Jul 1;20(1):725-732. doi: 10.1080/14686996.2019.1630856. eCollection 2019.
A triboelectric nanogenerator (TENG) is an emerging energy harvesting technology utilizing multi-directional, wasted mechanical energies stemming from vibrations, winds, waves, body movements, etc. In this study, we report a comb-structured TENG (CTENG) capable of effectively scavenging multi-directional motions from human movements, which include walking, jumping, and running. By attaching CTENG to a person's calf, we obtain a root-mean-square (RMS) power value of 5.28 μW (i.e. 13.12 V and 0.4 μA) for 1 s during mild running action (~5 m/s), which is sufficient for powering 10 light emitting diodes (LEDs). We integrate a CTENG with a simple hand-held pendulum (HHP) system with a natural frequency of 5.5 Hz. The natural frequency and input energy of our HHP system can be easily controlled by changing the holder mass and initial bending displacement, thus producing different output behaviors for the CTENG. Under the optimal HHP-based CTENG system design, the maximum output reaches 116 V at 6.5 μA under 0.1 kg mass and 4 cm bending displacement conditions. The corresponding output energy is 52.7 μJ for an operation time of 10.8 s. Our HHP-CTENG system can sufficiently power 45 LEDs and shows different output performances by varying the driving velocity of a vehicle, thus demonstrating the possibility for a self-powered velocity monitoring system.
摩擦纳米发电机(TENG)是一种新兴的能量收集技术,它利用来自振动、风、波浪、身体运动等多方向的、被浪费的机械能。在本研究中,我们报告了一种梳状结构的摩擦纳米发电机(CTENG),它能够有效地从人体运动(包括行走、跳跃和跑步)中 scavenging 多方向运动。通过将CTENG附着在人的小腿上,在轻度跑步动作(约5米/秒)期间,我们在1秒内获得了5.28微瓦的均方根(RMS)功率值(即13.12伏和0.4微安),这足以为10个发光二极管(LED)供电。我们将一个CTENG与一个固有频率为5.5赫兹的简单手持式摆锤(HHP)系统集成在一起。我们的HHP系统的固有频率和输入能量可以通过改变支架质量和初始弯曲位移来轻松控制,从而为CTENG产生不同的输出行为。在基于HHP的CTENG系统的最佳设计下,在0.1千克质量和4厘米弯曲位移条件下,最大输出在6.5微安时达到116伏。相应的输出能量在10.8秒的运行时间内为52.7微焦。我们的HHP-CTENG系统可以充分为45个LED供电,并通过改变车辆的行驶速度显示出不同的输出性能,从而证明了自供电速度监测系统的可能性。 (注:“scavenging”此处可能有误,未准确译出其在语境中的合适意思,推测可能是“获取”之类的意思 )