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Author:

Yang, Yi-Qing (Yang, Yi-Qing.) | Liu, Qiang (Liu, Qiang.) | Wang, Min (Wang, Min.) (Scholars:王民)

Indexed by:

EI Scopus PKU CSCD

Abstract:

Multiple tuned mass dampers (TMDs) are superior to the single TMD with the same mass in the bandwidth and effectiveness for vibration control, and the most adopted optimization methods for TMDs are H∞ or H2 (i.e. minimization of the amplitude or root mean squared value of the vibration). However, the chatter vibration in the machine tool is a special self-excited problem. Especially for turning, the chatter-free depth of cut is only determined by the negative real part of the relative frequency response function (FRF) between the tool and workpiece. The objective function of multiple TMDs damping the primary structure was formulated (i.e. maximizing the most negative point of tool point FRF), and the minimax approach was employed to optimize the stiffness and damping of each TMD. The advantage of the proposed method was validated by tuning three TMDs on a specially designed fixture of a turning machine after performing the modal test. The cutting tests demonstrate that the tuning method can further increase the chatter suppression performance of multiple TMDs, and the chatter free depth of cut can be increased 52% more than the H∞ method.

Keyword:

Vibration control Optimization Turning Acoustic devices Damping Frequency response Speed control Machine tools Modal analysis

Author Community:

  • [ 1 ] [Yang, Yi-Qing]School of Mechanical Engineering and Automation, Beihang University, Beijing 100191, China
  • [ 2 ] [Yang, Yi-Qing]Research and Application Center of Advanced CNC Machining Technology, Beihang University, Beijing 100191, China
  • [ 3 ] [Liu, Qiang]School of Mechanical Engineering and Automation, Beihang University, Beijing 100191, China
  • [ 4 ] [Liu, Qiang]Research and Application Center of Advanced CNC Machining Technology, Beihang University, Beijing 100191, China
  • [ 5 ] [Wang, Min]College of Mechanical Engineering and Applied Electronics Technology, Beijing University of Technology, Beijing 100124, China

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Source :

Journal of Vibration Engineering

ISSN: 1004-4523

Year: 2010

Issue: 4

Volume: 23

Page: 468-474

Cited Count:

WoS CC Cited Count: 0

SCOPUS Cited Count:

ESI Highly Cited Papers on the List: 0 Unfold All

WanFang Cited Count:

Chinese Cited Count:

30 Days PV: 7

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