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可调频悬臂梁式动力吸振器多频减振研究
引用本文:陈文华,牛军川. 可调频悬臂梁式动力吸振器多频减振研究[J]. 噪声与振动控制, 2021, 0(1): 188-193
作者姓名:陈文华  牛军川
作者单位:中国船舶科学研究中心;山东大学机械工程学院
基金项目:国家自然科学基金资助项目(51675306,51275275);工信部高技术船舶科研项目资助(2017[614]号)。
摘    要:手持打磨工具振动大,存在多个振动峰,且不同工况振动峰对应的频率不同.动力吸振器是控制窄带振动峰的有效方法,传统的"弹簧—质量"形式动力吸振器频率不易调节,且不能同时对多个频率进行动力吸振.为适应实际工程应用,以频率可调、可多频减振为目标,首先从结构阻抗角度阐述动力吸振器减振原理,然后设计一种适用于手持打磨工具的频率可调...

关 键 词:振动与波  悬臂梁式动力吸振器  仿真与实验  多频减振

Study on Multi-frequency Vibration Reduction of Cantilever Type Dynamic Vibration Absorbers with Tunable Resonant Frequency
CHEN Wenhua,NIU Junchuan. Study on Multi-frequency Vibration Reduction of Cantilever Type Dynamic Vibration Absorbers with Tunable Resonant Frequency[J]. Noise and Vibration Control, 2021, 0(1): 188-193
Authors:CHEN Wenhua  NIU Junchuan
Affiliation:(China Ship Scientific Research Center,Wuxi 214082,Jiangsu,China;School of Mechanical Engineering,Shandong University,Jinan 250061,China)
Abstract:The hand-held grinding tools have several vibration peaks with large amplitude,and the frequency of the vibration peaks are various under different working conditions.Using dynamic vibration absorbers is an effective method to attenuate narrow frequency band vibration.However,the resonant frequency of traditional“spring-mass”dynamic vibration absorber is not tunable,and it can’t absorb the vibrations with several different frequencies simultaneously.In this paper,the vibration reduction principle of dynamic vibration absorbers was described based on the impedance analysis.Then,a cantilever type dynamic vibration absorber with tunable resonant frequency was designed for hand-held grinding tools.And the frequency adjustment method was described based on the stiffness of the cantilever beam.The structure could hold multiple dynamic vibration absorbers conveniently.Finally,the practicability of cantilever type dynamic vibration absorbers was verified through simulation analysis and experiment,the frequency tunability was proved,and the effect of the multi-frequency vibration reduction was achieved.
Keywords:vibration and wave  cantilever type dynamic vibration absorber  simulation and experiment  multi-frequency vibration reduction
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