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A Global Method for Automatic Stitching and Repairing of STL Models for Rapid Prototyping and Solid Machining

机译:一种自动拼接和修复STL模型的全局方法,用于快速原型和实心加工

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In the design of complex parts involving free-form or sculptured surfaces, the design is usually represented by a B-rep model. But in production involving rapid prototyping or solid machining, the B-rep model is often converted to the popular STL model. Due to defects such as topological and geometric errors in the B-rep model, the resulting STL model may contain gaps, overlaps, and inconsistent orientations. This paper presents the extension of a surface reconstruction algorithm to the global stitching of STL models for rapid prototyping and solid machining applications. The model to be stitched may come from the digitization of physical objects by 3D laser scanners, or the triangulation of trimmed surfaces of a B-rep model. Systematic procedures have been developed for each of these two different but equally important cases. The result shows that the proposed method can robustly and effectively solve the global stitching problem for very complex STL models.
机译:在涉及自由形式或雕刻表面的复杂部件的设计中,设计通常由B-REP模型表示。但在涉及快速原型或实心加工的生产中,B-REP模型通常被转换为流行的STL模型。由于B-REP模型中的拓扑和几何误差等缺陷,所得到的STL模型可以包含间隙,重叠和取向不一致。本文介绍了STL模型的整体重建算法的延伸,可用于快速原型设计和实心加工应用。要缝合的模型可能来自3D激光扫描仪的物理对象的数字化,或者B-ep模型的修整表面的三角测量。已经为这两种不同但同样重要的情况开发了系统的程序。结果表明,对于非常复杂的STL模型,所提出的方法可以鲁棒地和有效地解决全局拼接问题。

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