Motion error estimation of circular arc interpolation cutter path of machining center produced by NC linear acceleration/deceleration processing
Author:
Affiliation:
1. Department of Mechanical Engineering, Faculty of Science and Engineering, Kyushu Sangyo University
Publisher
Japan Society of Mechanical Engineers
Link
https://www.jstage.jst.go.jp/article/transjsme/90/931/90_23-00247/_pdf
Reference22 articles.
1. Chen, F.J., Yin, S.H., Huang, H., Ohmori, H., Wang, Y., Fan, Y.F. and Zhu, Y.J., Profile error compensation in ultra-precision grinding of aspheric surfaces with on-machine measurement, International Journal of Machine Tools & Manufacture, Vol.50, No. 5 (2010), pp.480-486.
2. Farouki, R.T. and Nittler, K.M., Efficient high-speed cornering motions based on continuously-variable feedrates. I. Real-time interpolator algorithms, The International Journal of Advanced Manufacturing Technology, Vol. 87, No. 9 (2016), pp.3557-3568.
3. Hayasaka, T., Minoura, K., Ishizaki, K., Shamoto, E. and Sencer, B., A lightweight interpolation algorithm for short-segmented machining tool paths to realize vibration avoidance, high accuracy, and short machining time, Precision Engineering, Vol. 59 (2019), pp.1-17.
4. Ishizaki, K. and Shamoto, E., A new real-time trajectory generation method modifying trajectory based on trajectory error and angular speed for high accuracy and short machining time, Precision Engineering, Vol. 76 (2022), pp.173-189.
5. Jiang, X., Hu, Y., Huo, G., Su, C., Wang, B., Li, H., Shen, L. and Zheng, Z., Asymmetrical Pythagorean-hodograph spline-based C4 continuous local corner smoothing method with jerk-continuous feedrate scheduling along linear toolpath, The International Journal of Advanced Manufacturing Technology, Vol. 121 (2022), pp.5731-5754.
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