首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Effects of electrical properties on vibrations via electromechanical coupling in triboelectric energy harvesting
【24h】

Effects of electrical properties on vibrations via electromechanical coupling in triboelectric energy harvesting

机译:电气性能对摩擦能耦合机电耦合振动的影响

获取原文
获取原文并翻译 | 示例
       

摘要

Vibration energy harvesting has been a popular research topic in recent years and is a promising technology in the development of the Internet of Things. Triboelectric energy harvesting, as a relatively new energy harvesting technique, is drawing attention. However, relevant studies from the perspective of structural dynamics are rare, and a study on how the electrical properties of triboelectric energy harvesters (TEHs) affect their vibration is still missing. In this paper, we perform such a study for TEHs that use the two most common working modes-namely the lateral sliding mode and the vertical contact-separation mode. In the first part of the paper, the coupled electromechanical model of a sliding mode TEH-based on a cantilever beam system involving friction-is established. The effects of the tribo-charge surface density and the load resistance on the vibration of the harvester are investigated. It is found that the effects of the tribo-charge surface density on vibrations are similar to those of mechanical damping, while the load resistance can result in an interesting resistive shunt damping phenomenon which is distinct from the one found in piezoelectric energy harvesters. In the second part, the modelling of a vertical contact-separation mode TEH is established based on a single-degree-of-freedom vibro-impact oscillator, and the effects of the same electrical properties on vibrations are studied. The variation of the tribo-charge surface density can result in both vibration amplitude attenuation and resonance frequency shifting, while the change of the load resistance can influence vibrations only in the case of large tribo-charge surface densities. This study further unveils the electromechanical coupling mechanisms in TEHs and sheds some light on achieving desirable dynamic responses of TEHs via tuning their electrical properties.
机译:振动能量收获是近年来一直是一个流行的研究主题,并且是在互联网上发展的有希望的技术。摩擦电能收获,作为相对较新的能量收集技术,旨在引起注意。然而,来自结构动态的角度的相关研究很少见,并且仍然缺失摩擦电能量收割机(Tehs)对其振动的电气性质的研究。在本文中,我们对使用两个最常用的工作模式的TEH执行这样的研究 - 即横向滑动模式和垂直接触分离模式。在纸张的第一部分中,建立了基于涉及摩擦摩擦梁系统的滑动模式的耦合机电模型。研究了摩擦电荷表面密度和负载性对收割机振动的影响。结果发现,摩擦电荷表面密度对振动的影响与机械阻尼相似,而负载电阻会导致有趣的电阻分流阻尼现象,其与压电能量收割机中的不同之处不同。在第二部分中,基于自由度的自由度振动振荡器建立垂直接触分离模式Teh的建模,并研究了相同电性质对振动的影响。摩擦电荷表面密度的变化可以导致振动幅度衰减和谐振频率转移,而负载电阻的变化只能在大型摩擦电荷表面密度的情况下影响振动。该研究进一步推出了Tehs中的机电耦合机构,并通过调节其电性能来实现TEHS的理想动态响应。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号