Milling vibration control of semiconical shell workpiece with multiple distribution tuned mass dampers

被引:0
作者
Peng Qin
Yunan Liu
Min Wang
Yanlin Zhang
机构
[1] Beijing University of Technology,Beijing Key Lab of Advanced Manufacturing Technology, School of Mechanical and Applied Electronics Engineering
[2] Beijing Municipal Institute of Labor Protection,Beijing Key Lab of Environmental Noise and Vibration
[3] Beijing Key Lab of Electrical Discharge Machining Technology,undefined
[4] Beijing Xinli Machinery Co. Ltd.,undefined
来源
The International Journal of Advanced Manufacturing Technology | 2021年 / 115卷
关键词
Milling vibration control; Semiconical shell workpiece; Multiple distribution tuned mass damper; Spectro-geometric-Ritz method;
D O I
暂无
中图分类号
学科分类号
摘要
Considering the complexity geometry and thin wall feature, the semiconical shell workpiece will induce complicated and intense vibration in the milling process leading to poor surface quality and large machining deformation. In order to suppress the vibration, this paper focused on the semiconical shell workpiece and proposed a multiple distribution tuned mass damper (MDTMD) vibration control technique by attaching a series of optimized tuned mass dampers (TMD) to each optimal position of workpiece. The vibration characteristics and modal shapes of workpiece were obtained with the use of spectro-geometric-Ritz method (SGM) and the dynamic model of workpiece with MDTMD was established. A novel design of TMD was proposed. The optimal parameters and positions of each TMD were determined simultaneously using numerical optimization algorithm based on the modal summation method. Theoretical studies and experiment results shown that the proposed MDTMD method can remarkably improve the dynamic stiffness of the workpiece. The performance of vibration suppression is further verified in the impact tests and milling experiments.
引用
收藏
页码:2175 / 2190
页数:15
相关论文
共 96 条
[1]  
Wang TS(1996)Dynamic analysis of generally supported beams using Fourier series [J] J Sound Vib 196 285-293
[2]  
Lin CC(1997)A hierarchical functions set for predicting very high order plate bending modes with any boundary conditions [J] J Sound Vib 202 633-655
[3]  
Beslin O(1998)Free vibration of thin, isotropic, open, conical panels [J] J Sound Vib 217 297-320
[4]  
Nicolas J(2000)Free vibrations of beams with general boundary conditions [J] J Sound Vib 237 709-725
[5]  
Bardell NS(2014)Free transverse vibrations of orthotropic thin rectangular plates with arbitrary elastic edge supports [J] J Vibroeng 16 389-398
[6]  
Dunsdon JM(2011)Research on frequency-tuned dynamic vibration absorber [J] Appl Mech Mater 66 1762-1768
[7]  
Langley RS(2015)Optimal spindle speed determination for vibration reduction during ball-end milling of flexible details [J] Int J Mach Tools Manuf 92 19-30
[8]  
Li WL(2016)Chatter prediction for the peripheral milling of thin-walled workpieces with curved surfaces [J] Int J Mach Tools Manuf 109 36-48
[9]  
Shi D(2017)Design and machining application of a two-DOF magnetic tuned mass damper [J] Int J Adv Manuf Technol 89 1-9
[10]  
Shi X(2017)A tunable passive damper for suppressing chatters in thin-wall milling by considering the varying modal parameters of the workpiece [J] Int J Adv Manuf Technol 89 1-9