Tool path optimal design for slow tool servo turning of complex optical surface

Author:

Chen Xu1,Kang Min12,Wang Xingsheng1,Hassan Muhammad1,Yang Jun1

Affiliation:

1. College of Engineering, Nanjing Agricultural University, Nanjing, China

2. Jiangsu Provincial Key Laboratory for Intelligent Agricultural Equipment, Nanjing, China

Abstract

In order to increase the machining accuracy of slow tool servo turning of complex optical surface, the optimal design for tool path was studied. A comprehensive tool path generation strategy was proposed to optimize the tool path for machining complex surfaces. A new algorithm was designed for tool nose radius compensation which had less calculation error. Hermite segment interpolation was analyzed based on integrated multi-axes controller, and a new interpolation method referred to as triangle rotary method was put forward and was compared with the area method and three-point method. The machining simulation indicated that the triangle rotary method was significant in error reduction. The interpolation error of toric surface was reduced to 0.0015 µm from 0.06 µm and sinusoidal array surface’s interpolation error decreases to 0.37 µm from 1.5 µm. Finally, a toric surface was machined using optimum tool path generation method to evaluate the proposed tool path generation method.

Funder

Research and Innovation Project for College Graduates of Jiangsu Province

Publisher

SAGE Publications

Subject

Industrial and Manufacturing Engineering,Mechanical Engineering

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3. A theoretical and experimental investigation into tool setting induced form error in diamond turning of micro-lens array;The International Journal of Advanced Manufacturing Technology;2022-12-14

4. Advances in the design and manufacturing of novel freeform optics;International Journal of Extreme Manufacturing;2022-07-06

5. Subregional Process Method With Variable Parameters Based on a Potential Field in Slow Tool Servo Machining for a Complex Curved Surface;Journal of Manufacturing Science and Engineering;2021-09-23

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