Title :
Whirlwind Milling Cnc Technique on Large Scale Helical Curved Surfaces in Petroleum PCP and PDM
Author :
Xianzhong, Yi ; Shan, Li ; Haohong, Liu
Author_Institution :
Yangtze Univ., Jingzhou, China
Abstract :
A new high-speed milling scheme for machining complex revolutionary spiral curved surfaces by using the whirlwind milling technique is presented. The fundamental relationship equations of this milling technique are discussed based on 5-axis CNC specialized rotary-table horizontal milling machines. And the main parameters in generating tool paths are analyzed carefully. With this new method, a wider range of cutting width is available on its cutter tool edge, and the resulting surface finish has a smaller scallop height compared to traditional milling processes. Thus, developing the tool path in terms of constant scallop height strategy, the numbers of passes needed to achieve the same surface finish will be reduced and the total length of tool path will be shortened. The new technique shows that it can save the cutting time and cost exceedingly, and raise the labor productivity in manufacturing process.
Keywords :
computerised numerical control; cutting; electric motors; fuel pumps; large-scale systems; milling machines; petroleum; productivity; surface finishing; 5-axis CNC specialized rotary table horizontal milling machine; complex revolutionary spiral curved surface; constant scallop height strategy; cutter tool edge; cutting width; high-speed milling; labor productivity; large scale helical curved surface; manufacturing process; petroleum PCP; petroleum PDM; positive displacement motor; progressive cavity pump; surface finishing; tool path; whirlwind milling; Computer numerical control; Milling; Milling machines; Petroleum; Spirals; Surface treatment; Large-scale helical curved surface; PCP; PDM; Whirlwind Milling CNC technique;
Conference_Titel :
Measuring Technology and Mechatronics Automation (ICMTMA), 2011 Third International Conference on
Conference_Location :
Shangshai
Print_ISBN :
978-1-4244-9010-3
DOI :
10.1109/ICMTMA.2011.857