Development of Measurement for Motion Accuracy of 5 Axis NC Machine Tool
Author(s) -
Tomoyuki Saiki,
Masaomi Tsutsumi,
Hiroshi Suzuki,
Masahide Kouya,
Masaki Ushio
Publication year - 2008
Publication title -
international journal of automation technology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.513
H-Index - 18
eISSN - 1883-8022
pISSN - 1881-7629
DOI - 10.20965/ijat.2008.p0111
Subject(s) - machine tool , motion (physics) , position (finance) , motion control , machining , circular motion , computer science , motion system , kinematics , numerical control , realization (probability) , artificial intelligence , computer vision , engineering , mechanical engineering , mathematics , robot , physics , statistics , finance , classical mechanics , economics
In terms of the realization for high accurate and effective machining of complicated shape having under cut shape and free formed surface, five axis controlled machine tools become indispensable because they have any tool position and attitude to avoid the collision between machine tool elements and work piece. In order to estimate the motion accuracy of NC machine tool, various kinds of certificate methods like circular cone cutting test prescribed with NAS and DBB method using the circular motion have been developed and standardized. These methods are mainly used for the motion testing of three-axis NC machine tools and therefore new method and measuring equipment for five-axis NC machine tool is needed. This study aims at developing the motion accuracy measurement system which can measure various kinds of motions like linier motion, circular motion and continuous curved motion under simultaneous five-axis controlling and establishing the compensate method of tool motion. Consideration is added from the viewpoint of motion accuracy using measurement system developed in this report in case simultaneous five-axis control motion command value from CL data.
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