CNC 공작기계의 고정밀 윤곽가공을 위한 가변 윤곽오차 모델
Abstract
Studies have been conducted on various contour error models applied to cross-coupling control systems, which are essential for achieving contour accuracies in multi-axis CNC systems. Most of these studies examine contour error models for straight, corner, and curved tool paths. However, there are limitations to applying these existing works in multi-axis tool paths because the straight, corner, and curved tool paths may coexist. Therefore, this paper presents a variable contour error model for cross-coupling control systems to achieve high-precision contour machining. The proposed variable contour error model allows real-time changes to the contour error model based on the tool path curvature. The proposed model was evaluated by implementing a cross-coupling control system on a PC-based three-axis CNC testbed. From the experimental results, the usefulness of the proposed model was confirmed in terms of the contour accuracy.
Keywords:
CNC machine tool, High-precision machining, Cross-coupling controller, Variable contour error model, Contouring accuracyAcknowledgments
이 연구는 2021년도 산업통산자원부 및 한국산업기술평가관리원(KEIT) 연구비 지원에 의한 연구임(20012834).
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Master’s degree student in the Department of Mechanical Engineering, Dankook University. His research interest is CNC machine tool systems and artificial intelligence.
E-mail: sungyj@dankook.ac.kr
Ph.D. candidate in the Department of Mechanical Engineering, Dankook University. His research interest is CNC machine tool systems and CAD/CAM.
E-mail: jmkang@dankook.ac.kr
Professor in the Department of Mechanical Engineering, Dankook University. His research interest is CNC machine tool systems and CAM.
E-mail: scjee@dku.edu