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Application of clothing friction nanopower generators in human motion energy acquisition

机译:服装摩擦纳米μ电厂在人体运动能源采集中的应用

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摘要

In order to monitor the movement state of the human body and fully collect the energy generated by human body motion, taking a fully flexible integrated friction nanogenerator as an example, the application of clothing friction nanopower generators in human motion energy acquisition is researched. The fully flexible integrated friction nanogenerator is prepared by vulcanizing silica gel, high-temperature-vulcanized silica gel and silver-plated glass powder, and the friction nanogenerator is used to collect the energy generated by human motion. The experimental results show that when the fully flexible integrated friction nanogenerator is placed on the elbows, underarms, knees and soles of the feet, it can collect the energy generated by the movements of the human body, such as walking, tapping and swinging of arms. The corresponding short-circuit current is output, and the mechanical energy generated by human motion is converted into electrical energy. The current performance of the friction nanogenerator is stable in the optimal frequency range, and human motion energy in the low-frequency band can be efficiently collected, and the human motion posture is monitored by the current output values in different states.
机译:为了监测人体的运动状态并充分收集人体运动产生的能量,采用完全柔性的集成摩擦纳米能器,作为示例,研究了服装摩擦纳米电机发生器在人类运动能源采集中的应用。通过硫化硅胶,高温硫化硅胶和镀银玻璃粉末来制备完全柔性的集成摩擦纳米能器,并且使用摩擦纳米液体来收集人体运动产生的能量。实验结果表明,当将完全柔性的集成摩擦纳米液放置在肘部,腋下,脚部,膝盖和鞋底上时,它可以收集人体运动产生的能量,例如行走,攻丝和摆动臂。输出相应的短路电流,并且由人运动产生的机械能被转换成电能。摩擦纳米液的电流性能在最佳频率范围内稳定,并且可以有效地收集低频带中的人体运动能量,并且通过不同状态的电流输出值监测人体运动姿势。

著录项

  • 来源
    《Nanomaterials and Energy 》 |2020年第2期| 1-10| 共10页
  • 作者

    Jing Lin; Xingyu Huang;

  • 作者单位

    Department of Physical Education Institute Gannan Normal University Ganzhou China;

    Faculty of Associated Medical Sciences Khon Kaen University Khon Kaen Thailand;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    dielectrics; energy; nanoarchitectures;

    机译:电介质;活力;纳米建筑学;

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