The cutting force in ball-end milling of sculptured surfaces is calculated. In sculptured surface machining, a simple method to determine the cutter contact area is necessary since cutting geometry is complicated and cutter contact area changes continuously. In this study, the cutter contact area is determined from the Z-map of the surface geometry and current cutter location. To determine cutting edge element engagement, the cutting edge elements are projected onto the cutter plane normal to the Z-axis and compared with the cutter contact area obtained from the Z-map. Cutting forces acting on the engaged cutting edge elements are calculated using an empirical method. Empirical cutting mechanism parameters are set as functions of cutting edge element position angle in order to consider the cutting action variation along the cutting edge. The relationship between undeformed chip geometry and the cutter feed inclination angle is also analyzed. The resultant cutting force is calculated by numerical integration of cutting forces acting on the engaged cutting edge elements. A series of experiments were performed to verify the proposed cutting force estimation model. It is shown that the proposed method predicts cutting force effectively for any geometry including sculptured surfaces with cusp marks and a hole.
[1]
Minyang Yang,et al.
The prediction of the cutting force in ball-end milling with a flexible cutter
,
1993
.
[2]
Richard E. DeVor,et al.
The prediction of cutting forces in end milling with application to cornering cuts
,
1982
.
[3]
Chong Nam Chu,et al.
Feed-Rate Optimization of Ball End Milling Considering Local Shape Features
,
1997
.
[4]
Ching-Chih Tai,et al.
A predictive force model in ball-end milling including eccentricity effects
,
1994
.
[5]
Min-Yang Yang,et al.
The prediction of cutting force in ball-end milling
,
1991
.
[6]
Ching-Chih Tai,et al.
Model for cutting forces prediction in ball-end milling
,
1995
.
[7]
Hsi-Yung Feng,et al.
The prediction of cutting forces in the ball-end milling process—I. Model formulation and model building procedure
,
1994
.
[8]
Richard E. DeVor,et al.
The effect of runout on cutting geometry and forces in end milling
,
1983
.
[9]
Hsi-Yung Feng,et al.
The prediction of cutting forces in the ball-end milling process—II. Cut geometry analysis and model verification
,
1994
.