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Design of a Wearable Thermoelectric Generator for Harvesting Human Body Energy

机译:用于收获人体能量的可穿戴热电发电机的设计

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This paper presents the design and fabrication of a wearable thermoelectric generator (TEG) with high power density for harvesting the human body heat energy. The proposed TEG was fabricated using a flexible printed circuit board (FPCB) as the substrate. The P-type and N-type thermoelectric blocks were made of Bi_2Te_3-based thermoelectric material and welded on the FPCB, and they were surrounded by the soft PDMS material. The prototyped TEG consisted of 18 thermocouples, which was connected by FPCB and silver paste over an area of 42 x 30 mm~2. The fabricated TEG could generate a voltage of 48 mV for a temperature difference of 12 K. Then, the TEG was mounted onto the human wrist skin to harvest the human body heat energy. Results showed that the measured output power was 130.6 nW at ambient temperature of 25 °C. Thus, the developed TEG has the potential for human body heat energy harvesting and utilized for the development of wearable self-powered mobile devices.
机译:本文介绍了具有高功率密度的可穿戴热电发电机(TEG)的设计和制造,用于收获人体热能。使用柔性印刷电路板(FPCB)作为基板制造所提出的TEG。 P型和N型热电块由Bi_2Te_3的热电材料制成,并焊接在FPCB上,它们被软PDMS材料包围。原型TEG由18个热电偶组成,其通过FPCB和银浆连接,面积42×30mm〜2。制造的TEG可以产生48mV的电压,用于12k的温度差。然后,将TEG安装在人腕部皮肤上以收获人体热能。结果表明,测量的输出功率在25℃的环境温度下为130.6 nW。因此,开发的TEG具有人体热能收集的潜力,并用于开发可穿戴自动移动设备。

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