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A reverse engineering methodology for rotary components from point cloud data

机译:来自点云数据的旋转组件的逆向工程方法

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This paper presents data analysis and model generation techniques for reverse engineering rotary components such as shafts and rotary dies. Existing reverse engineering techniques create a computer-aided design model from point cloud data that are a mathematical 'best fit', but this may be an inaccurate representation due to noise contained in the model. Also, rotary components have their own set of design parameters and reverse engineering design challenges. For several rotary applications, the point cloud data go through a series of transformations (such as transforming the points from a rotational to a planar representation) in order to extract the relevant information, and then a 'healing' process is performed to modify critical geometry and dimensions. To meet these challenges, a systematic approach is adopted in a comprehensive manner to extract the relevant information and transform it into relevant design knowledge. Several practical examples are presented that highlight the issues, the reverse engineering methodology, and how these techniques provide a platform for any subsequent design modifications and the component manufacture.
机译:本文介绍了反向工程旋转零件(例如轴和旋转模具)的数据分析和模型生成技术。现有的逆向工程技术可以根据点云数据创建计算机辅助设计模型,这是数学上的“最佳拟合”,但是由于模型中包含的噪声,这可能表示不准确。而且,旋转组件具有其自己的一组设计参数和逆向工程设计挑战。对于几种旋转应用,点云数据经过一系列转换(例如将点从旋转表示转换为平面表示)以提取相关信息,然后执行“修复”过程以修改关键几何形状和尺寸。为了应对这些挑战,采用一种系统的方法来全面提取相关信息并将其转换为相关的设计知识。给出了几个实际的示例,这些示例突出了问题,逆向工程方法以及这些技术如何为后续的任何设计修改和组件制造提供平台。

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