Title :
Equalization control of machining surface by cutting depth estimation using machining support system
Author :
Kawaguchi, Tatsuki ; Sakamoto, R. ; Yano, Ken´ichi ; Fofana, Mustapha S.
Author_Institution :
Dept. of Mech. Eng., Mie Univ., Tsu, Japan
Abstract :
Compared with machining by automation, handwork is suitable for high-variety low-volume manufacturing, because such manufacturing requires a lower cost and shorter lead time. However, high-concentration machining should be implemented in handwork. Our goal is to develop a finish machining support robot system that can realize high accuracy machining in the case of initial phase of deburring process. In this study, we intended to estimate a variance of cutting without feed rate of the tool to suppress excess the cutting and shortage of the cutting depth in the tool contact start point. Specifically we focused on the relationship between the cutting force and cutting depth and proposed machining model of deburring for a metal plane. As a result, we identified the relationship between the impulse of the cutting force and the cutting depth, the variation of machining accuracy in the tool contact starting point. Finally, the effectiveness of the proposal method is shown by machining experiments.
Keywords :
cutting; cutting tools; deburring; industrial robots; mechanical contact; cutting depth estimation; cutting force; deburring process; machining support system; machining surface; robot system; tool contact; Feeds; Force; Force control; Machining; Mathematical model; Pressing; Robots;
Conference_Titel :
System Integration (SII), 2013 IEEE/SICE International Symposium on
Conference_Location :
Kobe
DOI :
10.1109/SII.2013.6776735