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Erschienen in: Advances in Manufacturing 1/2019

30.01.2019

Tool-path generation for industrial robotic surface-based application

verfasst von: He Lyu, Yue Liu, Jiao-Yang Guo, He-Ming Zhang, Ze-Xiang Li

Erschienen in: Advances in Manufacturing | Ausgabe 1/2019

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Abstract

Industrial robots are widely used in various applications such as machining, painting, and welding. There is a pressing need for a fast and straightforward robot programming method, especially for surface-based tasks. At present, these tasks are time-consuming and expensive, and it requires an experienced and skilled operator to program the robot for a specific task. Hence, it is essential to automate the tool-path generation in order to eliminate the manual planning. This challenging research has attracted great attention from both industry and academia. In this paper, a tool-path generation method based on a mesh model is introduced. The bounding box tree and kd-tree are adopted in the algorithm to derive the tool path. In addition, the algorithm is integrated into an offline robot programming system offering a comprehensive solution for robot modeling, simulation, as well as tool-path generation. Finally, a milling experiment is performed by creating tool paths on the surface thereby demonstrating the effectiveness of the system.

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Metadaten
Titel
Tool-path generation for industrial robotic surface-based application
verfasst von
He Lyu
Yue Liu
Jiao-Yang Guo
He-Ming Zhang
Ze-Xiang Li
Publikationsdatum
30.01.2019
Verlag
Shanghai University
Erschienen in
Advances in Manufacturing / Ausgabe 1/2019
Print ISSN: 2095-3127
Elektronische ISSN: 2195-3597
DOI
https://doi.org/10.1007/s40436-018-00246-x

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