4.5 Article

Calculation method of cutter location points considering corner transition speed in CNC

出版社

SAGE PUBLICATIONS LTD
DOI: 10.1177/09544054231158061

关键词

Cutter location (CL) points; corner transition algorithm; NURBS curve; corner speed

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A calculation method of cutter location (CL) points considering corner transition speed in CNC is proposed in this study. The key geometric parameters affecting the corner speed are analyzed, and an objective function is established to connect the CL points calculation in CAM and the corner transition speed in CNC. By solving the objective function, the calculation method of the CL points is developed and its effectiveness is verified through experiments. Compared with the commonly used iso-chord height method, the proposed method increases the speed at the corner of the CL points and reduces acceleration and jerk at the same time. It significantly improves tracking accuracy, trajectory accuracy, and machining efficiency, and can be integrated into CAM software to generate high-quality CL points.
The calculation method of cutter location (CL) points only considers the geometric errors, but cannot consider the requirements of the corner transition algorithm in CNC, which results in the smoothing algorithm in the CNC not playing a maximum role or even failing. To solve this problem, a calculation method of the CL points considering corner transition speed in CNC is proposed. Firstly, the key geometric parameters of the CL points that affect the corner speed are analyzed. Secondly, according to the analysis results, the objective function is established to connect the CL points calculation in CAM and the corner transition speed in CNC. By solving the objective function, the calculation method of the CL points is developed. Finally, the effectiveness of this method is verified by experiment. Comparing with the commonly used iso-chord height method, the proposed method can increase the speed at the corner of the CL points and reduce the acceleration and jerk at the same time. By the proposed method, the tracking accuracy, trajectory accuracy, and machining efficiency can be significantly improved. The proposed method can be integrated into CAM software to generate high quality CL points.

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