Real-Time Compensation of Chatter Vibration in Machine Tools

Full Text (PDF, 862KB), PP.34-40

Views: 0 Downloads: 0

Author(s)

Dong-Hoon Kim 1,* Jun-Yeob Song 1 Suk-Keun Cha 2 Han-kyu Kim 3

1. Korea Institute of Machinery and Materials, South Korea

2. ACS Co., Ltd.

3. SMIC Co., Ltd., South Korea

* Corresponding author.

DOI: https://doi.org/10.5815/ijisa.2013.06.04

Received: 22 Sep. 2012 / Revised: 2 Jan. 2013 / Accepted: 14 Mar. 2013 / Published: 8 May 2013

Index Terms

Machine-tools, Chatter-vibration, Compensation, Embedded-device, CNC

Abstract

The chatter vibration stands for a sudden relative vibration appeared between a material and a tool while processing with a machine. This vibration is a factor that seriously affects the quality of processed materials as well as being a factor which causes serious damages to the tool and the machine. This study is related to the detection and compensation of chatter vibration that can compensate chatter vibration faster and produce processed goods with more precision by autonomous compensation. 
The above-mentioned chatter vibration compensator includes the chatter vibration sensor and the chatter compensator that estimates the compensation value according to the sensor detecting the chatter vibration of machine tool and the chatter vibration detected from the sensor while having a feature of being organized by interlocking with the machine tool controller.

Cite This Paper

Dong-Hoon Kim, Jun-Yeob Song, Suk-Keun Cha, Han-kyu Kim, "Real-Time Compensation of Chatter Vibration in Machine Tools", International Journal of Intelligent Systems and Applications(IJISA), vol.5, no.6, pp.34-40, 2013. DOI:10.5815/ijisa.2013.06.04

Reference

[1]D. H. Kim and Song, J. Y., Ubiquitous-Based Mobile Control and Monitoring of CNC Machines for Development of u-Machine, Journal of Mechanical Science and Technology, 20 (4) (2006) 455-466.

[2]D. H. Kim and J. Y. Song, Knowledge-Evolutionary Intelli-gent Machine-Tool - Part 1: Design of Dialogue Agent based on Standard Platform, Journal of Mechanical Science and Technology, 20 (11) (2006) 1863-1872.

[3]R. Cheah, Design and Implementation of an MMS Environment on ISODE, Computer Communications, 20 (15) (1997) 1354-1364.

[4]D. H. Kim, S. H. Kim and K.S. Koh, CNC-implemented Fault Diagnosis and Web-based Remote Services, Journal of Mechanical Science and Technology, 19 (5) (2005) 1095-1106.

[5]P. K. Wright, Principles of open-architecture manufacturing, Journal of Manufacturing Systems, 14 (3) (1995) 187-202.

[6]I. Yellowley and P. R. Pottier, The integration of process and geometry within an open architecture machine tool control-ler, International Journal of Machine Tools & Manufacture, 34 (2) (1998) 277-293.

[7]Budak, E. and Altintas Y. “Analytical prediction of chatter stability in milling – Part1 : General formulation,”, Trans. ASME, Journal of Dynamic System, Measurement and Control, (120) (2002) 22-30.