A framework from point clouds to workpieces
Combining computer-aided design and computer numerical control (CNC) with global technical connections have become interesting topics in the manufacturing industry. A framework was implemented that includes point clouds to workpieces and consists of a mesh generation from geometric data, optimal sur...
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Veröffentlicht in: | Visual computing for industry, biomedicine and art biomedicine and art, 2022-08, Vol.5 (1), p.21-21, Article 21 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Combining computer-aided design and computer numerical control (CNC) with global technical connections have become interesting topics in the manufacturing industry. A framework was implemented that includes point clouds to workpieces and consists of a mesh generation from geometric data, optimal surface segmentation for CNC, and tool path planning with a certified scallop height. The latest methods were introduced into the mesh generation with implicit geometric regularization and total generalized variation. Once the mesh model was obtained, a fast and robust optimal surface segmentation method is provided by establishing a weighted graph and searching for the minimum spanning tree of the graph for extraordinary points. This method is easy to implement, and the number of segmented patches can be controlled while preserving the sharp features of the workpiece. Finally, a contour parallel tool-path with a confined scallop height is generated on each patch based on B-spline fitting. Experimental results show that the proposed framework is effective and robust. |
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ISSN: | 2524-4442 2096-496X 2524-4442 |
DOI: | 10.1186/s42492-022-00117-0 |