Identification and Modeling of Process Damping in Milling

Author:

Tunc L. T.,Budak E.1

Affiliation:

1. e-mail:  Manufacturing Research Laboratory, Sabanci University, 34956 Istanbul, Turkey

Abstract

In this study, a practical identification method for process damping is presented for milling, and the information obtained from identification is used for modeling purposes. In the proposed approach, the process-damping coefficients in x and y directions are identified directly from the experimental stability limits. Then, they are used in identification of the indentation constant through energy balance formulation. The identified indentation constant is further used in modeling of process damping and estimation of stability limit for different cutting conditions and tool geometries. Milling tools with two different types of flank geometries, namely, planar and cylindrical, are considered in this study. The predictions are verified by time-domain simulations and experimental results. It is shown that the presented method can be used for identification and modeling of process damping in milling to determine chatter-free cutting depths at relatively low cutting speeds.

Publisher

ASME International

Subject

Industrial and Manufacturing Engineering,Computer Science Applications,Mechanical Engineering,Control and Systems Engineering

Reference20 articles.

1. An Explanation of Low-Speed Chatter Effects;ASME J. Eng. Industry,1969

2. Analysis of the State of Research in Cutting Dynamics;CIRP Ann.,1978

3. Special Aspects of Chatter in Milling;ASME J. Vib. Acoust.,1983

4. A New Approach to Estimating the Cutting Process Damping Under Working Conditions;Trans. NAMRI/SME,1990

5. On the Calculation of Stability Charts on the Basis of the Damping and Stiffness of the Cutting Process;CIRP Ann.,1971

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