Analytical Prediction of Part Dynamics for Machining Stability Analysis

Author:

Alan Salih, ,Budak Erhan,Özgüven H. Nevzat,

Abstract

An analytical procedure is developed to predict workpiece dynamics in a complete machining cycle in order to obtain frequency response functions (FRF), which are needed in chatter stability analyses. For this purpose, a structural modification method that is an efficient tool for updating FRFs is used. The mass removed by machining is considered to be a structural modification in order to determine the FRFs at different stages of the process. The method is implemented in a computer code and demonstrated on different geometries. The predictions are compared and verified by FEA. Predicted FRFs are used in chatter stability analyses, and the effect of part dynamics on stability is studied. Different cutting strategies are compared for increased chatter-free material removal rates considering part dynamics.

Publisher

Fuji Technology Press Ltd.

Subject

Industrial and Manufacturing Engineering,Mechanical Engineering

Reference23 articles.

1. S. A. Tobias, “Machine-Tool Vibration,” Blackie & Son Ltd, 1965.

2. J. Tlusty, “Manufacturing Processes and Equipment,” Prentice Hall, 2000.

3. S. A. Tobias and W. Fishwick, “Theory of Regenerative Machine Tool Chatter,” The Engineer, Vol.205, pp. 199-203, 1958.

4. J. Tlusty and M. Polacek, “The stability of Machine Tools against Self Excited Vibrations,” ASME Int. Research in Production Engineering, Vol.1, pp. 465-474, 1963.

5. H. E. Merritt, “Theory of Self-excited Machine-tool Chatter,” J. of Engineering for Industry, Vol.87, pp. 447-454, 1965.

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