材料科学
纳米发生器
电流变液
摩擦电效应
悬臂梁
机械系统
振动
机械能
纳米技术
功率(物理)
极限(数学)
复合材料
机械工程
压电
工程类
声学
电场
数学分析
物理
量子力学
数学
作者
Jianfeng Sun,Lingjun Zhang,Xindan Hui,Yingzhou Huang,Jie Chen,Chenguo Hu,Hengyu Guo,Song Qi,Zhong Lin Wang
标识
DOI:10.1002/adfm.202212248
摘要
Abstract Mechanical system with adjustable stiffness and damping (ASAD) shows great potential in vibration suppression of aircraft, vehicle, precise instrument, etc. However, current ASAD systems consist of power, sensing, and controlling components, which bring huge challenges of system reliability and integrability, and critically limit its application diversity. Herein, we proposed the first strategy for regulating ASAD system that is system simplification, self‐powered and no‐delay by deeply coupling triboelectric nanogenerator (TENG) and electrorheological fluid (ERF). Under the time‐varying mechanical triggering, the local and time correlated output of TENG instantaneously applied on the ERF regulates the entire mechanical system dynamically and “in‐phase”. As an illustration, the resonance of a cantilever system is effectively suppressed naturally without complicated controlling strategy, and the vibration isolating efficiency reaches up to 85.2%. Finally, a mechanical transmission system is demonstrated utilizing a rotary TENG and ERF, excellent soft‐start performance is enabled by this self‐regulating ASAD strategy. This work may provide the opening arsenal of methodologies used in self‐powered and self‐regulating mechanical systems.
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