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首页> 外文期刊>Sensors and Actuators, A. Physical >Seesaw-structured triboelectric nanogenerator for scavenging electrical energy from rotational motion of mechanical systems
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Seesaw-structured triboelectric nanogenerator for scavenging electrical energy from rotational motion of mechanical systems

机译:跷跷板结构的摩擦纳米能器,用于从机械系统的旋转运动中清除电能

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This study reports a seesaw-structured triboelectric nanogenerator (S-TENG) for efficiently harvesting electrical energy from rotational motion of mechanical systems. The designed S-TENG with two arms is comprised four contact-pair units with distinctly different triboelectric polarity materials. The generated electric power from the unique structure based on the seesaw system was double at every machine rotation cycle. A magnetically coupled contact mechanism was also utilized to reduce the wear of the polymer material. It was experimentally confirmed that the proposed design significantly improved the reliability and long-term stability in comparison with currently available TENG systems based on the sliding mechanism. In addition, micro-pyramid patterns were formed on the polymer surface to enhance the surface charge density. Through systematic experiments with a variety of operational conditions, an instantaneous maximum output power density of 13.86 W/m(2) was achieved at a rotation speed of 200 rpm under a constant magnetic field strength of 0.2 T. The S-TENG has been demonstrated as a direct power source to drive small electronic devices such as commercial LED arrays and to charge an energy storage unit. This study further expanded the potential applications of the S-TENG to realize the self powered wireless sensor nodes such as structural health and condition monitoring system. (C) 2017 Elsevier B.V. All rights reserved.
机译:该研究报告了跷跷板结构的摩擦纳米料(S-Teng),用于从机械系统的旋转运动有效地收集电能。具有两个臂的设计的S-teng包括四个接触单元,具有明显不同的摩擦极性材料。基于跷跷板系统的独特结构的产生的电力在各机器旋转循环处是双倍的。磁耦合接触机构还用于减小聚合物材料的磨损。它在实验证实,该设计的设计显着提高了基于滑动机构的现有腾腾系统的可靠性和长期稳定性。另外,在聚合物表面上形成微金字塔图案,以增强表面电荷密度。通过具有各种操作条件的系统实验,在恒定磁场强度为0.2吨的恒定磁场强度下以200rpm的转速实现13.86W / m(2)的瞬时最大输出功率密度。S-Teng已经证明作为驱动诸如商业LED阵列之类的小型电子设备并充电能量存储单元的直接电源。本研究进一步扩展了S-Teng的潜在应用,以实现自动无线传感器节点,如结构健康和状态监测系统。 (c)2017年Elsevier B.V.保留所有权利。

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