Title :
Development and application of machining complex ruled surface technology by WEDM
Author :
Wang, Xinrong ; Wang, Dong ; Zhang, Xia ; Wang, Ping
Author_Institution :
Coll. of Mech. Eng., Jiamusi Univercity, Jiamusi, China
Abstract :
In order to solve the problem of machining complex ruled surface parts, the complex surface WEDM system with a new type of roll-over automatic indexing CNC worktable was developed. The motion laws of machining complex ruled surface by multi-axis WEDM were analyzed, and the mathematical modeling of multi-axis WEDM system were fulfilled. The ideal simulation results can be obtained by computer simulation, and the ideal machining parameters obtained by computer simulation provide a theoretical basis for machining complex ruled surface. The two-axis roll-over automatic indexing CNC worktable was developed, the CNC system software of machining complex ruled surface by multi-axis were programmed, which possess stable machining performance. The ideal complex ruled surface parts can be machined by combining the two-axis roll-over automatic indexing CNC worktable and the domestic high-speed WEDM machine tool. The above-mentioned works can solve the key technology problems from the root about machining complex ruled surface parts on the high-speed WEDM machine tool, extend the use range of WEDM and develop the machining complex ruled surface technology according to the situation of China.
Keywords :
computerised numerical control; machine tools; machining; production engineering computing; CNC system software; complex surface WEDM system; computer simulation; domestic high-speed WEDM machine tool; machining complex ruled surface technology; multiaxis WEDM system; roll-over automatic indexing CNC worktable; Application software; Computational modeling; Computer numerical control; Computer simulation; Educational technology; Machine assisted indexing; Machine tools; Machining; Mechanical engineering; Yttrium; CNC worktable; WEDM; achining technolog; complex ruled surface; experiment;
Conference_Titel :
Mechanic Automation and Control Engineering (MACE), 2010 International Conference on
Conference_Location :
Wuhan
Print_ISBN :
978-1-4244-7737-1
DOI :
10.1109/MACE.2010.5535334