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首页> 外文期刊>Advanced energy materials >A Soft and Robust Spring Based Triboelectric Nanogenerator for Harvesting Arbitrary Directional Vibration Energy and Self-Powered Vibration Sensing
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A Soft and Robust Spring Based Triboelectric Nanogenerator for Harvesting Arbitrary Directional Vibration Energy and Self-Powered Vibration Sensing

机译:基于软,鲁棒弹簧的摩擦纳米发电机,用于收集任意方向的振动能量和自供电的振动传感

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摘要

Vibration is a common mechanical phenomenon and possesses mechanical energy in ambient environment, which can serve as a sustainable source of power for equipment and devices if it can be effectively collected. In the present work, a novel soft and robust triboelectric nanogenerator (TENG) made of a silicone rubber-spring helical structure with nanocomposite-based elastomeric electrodes is proposed. Such a spring based TENG (S-TENG) structure operates in the contact-separation mode upon vibrating and can effectively convert mechanical energy from ambient excitation into electrical energy. The two fundamental vibration modes resulting from the vertical and horizontal excitation are analyzed theoretically, numerically, and experimentally. Under the resonant states of the S-TENG, its peak power density is found to be 240 and 45 mW m(-2) with an external load of 10 M Omega and an acceleration amplitude of 23 m s(-2). Additionally, the dependence of the S-TENG's output signal on the ambient excitation can be used as a prime self-powered active vibration sensor that can be applied to monitor the acceleration and frequency of the ambient excitation. Therefore, the newly designed S-TENG has a great potential in harvesting arbitrary directional vibration energy and serving as a self-powered vibration sensor.
机译:振动是一种常见的机械现象,在周围环境中具有机械能,如果可以有效收集,则可以作为设备和设备的可持续动力来源。在目前的工作中,提出了一种新型的软而坚固的摩擦纳米发电机(TENG),它由具有纳米复合材料基弹性电极的硅橡胶弹簧螺旋结构制成。这种基于弹簧的TENG(S-TENG)结构在振动时以接触分离模式运行,并且可以有效地将来自环境激励的机械能转换为电能。从垂直和水平激励产生的两个基本振动模式在理论上,数值上和实验上进行了分析。在S-TENG的共振状态下,发现其峰值功率密度为240和45 mW m(-2),外部负载为10 M Omega,加速度幅度为23 m s(-2)。此外,S-TENG的输出信号对环境激励的依赖性可以用作主要的自供电有源振动传感器,该传感器可用于监视环境激励的加速度和频率。因此,新设计的S-TENG在收集任意方向的振动能量并用作自供电振动传感器方面具有巨大的潜力。

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