Variable-period feed interpolation algorithm for high-speed five-axis machining

Yuyao Li1, Jingchun Feng1, Yuhan Wang1,2, Jianguo Yang1
1School of Mechanical Engineering, Shanghai Jiao tong University, Shanghai, PR China
2State Key Laboratory of Mechanical System and Vibration, Shanghai Jiao tong University, Shanghai, PR China

Tóm tắt

To alleviate the feed fluctuation and to maintain a smooth feed in conventional five-axis machining, an optimal feed interpolation algorithm (look-ahead) is proposed. However, the problem arises where the segment usually cannot be interpolated exactly in an integer period because of the nonzero joint feed at the junction. To overcome this problem, and to achieve faster machining speed and higher quality parts, this paper presents an optimal feed interpolation algorithm for high-speed, five-axis machining having the function of “look-ahead”, i.e., variable-period linear interpolation algorithm. In real applications, the proposed algorithm results in: (1) constant speed; (2) high machining accuracy. Moreover, in this paper, an efficient method for acceleration and deceleration control is presented to achieve the highest-quality feed profiles and to shorten machining times. The precision and speed of machining is improved greatly. Experimental results verify the effectiveness of the proposed method.

Tài liệu tham khảo

Fleisig RV, Spence AD (2001) CAD Comput Aided Des 33(1):1–15 (Jan) Koren Y, Lo C-C, Shpitalni M (1993) CNC interpolators: algorithms and analysis. In: Proc of the ASME Prod Engng Div Manuf Sci and Engng, vol. 64, pp 83–92 Xu HF, Wang YH (2005) Research on feedrate model of look-ahead and solution algorithm for high-speed machining of small line segments. Mech Eng 9:9–13 Luo FY, Zhou YF, Yin J (2007) A universal velocity profile generation approach for high-speed machining of small line segments with look-ahead. Int J Adv Manuf Technol 35(5–6):505–518 Jeon JW, Ha YY (2000) A generalized approach for the acceleration and deceleration of industrial robots and CNC machine tools. IEEE Trans Ind Electron 47(1):133–139 Luo FY, Zhou YF, Yin J (2006) A generalized acceleration and deceleration approach for continuous small line blocks with look-ahead. J Wuhan Univ Technol 28(Suppl 1):1052–1058 Hu J, Xiao LJ, Wang YH, Wu ZY (2006) An optimal feedrate model and solution algorithm for a high-speed machine of small line blocks with look-ahead. Int J Adv Manuf Technol 28(9):930–935 Han GC, Kim DI, Kim HG, Nam K, Choi BK, Kim SK (1999) A high-speed machining algorithm for CNC machine tools[C]. In: IECON’99 Proc of the 25th Annual Conference of the IEEE, pp 1493–1497 Guo XG (2002) Research on high accuracy interpolation strategy for high-speed-cutting. PhD Thesis, China Wang YH, Feng JC, Li YH, Chen M (2006) An optimal feed interpolation algorithm for high-speed five-axis machining. Mat Sci Forum 532–533:873–876 Pan M, Wu YJ, Leng HB (2005) Research on accelerating and decelerating control of NC system. Manuf Autom 27(9):30–33