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Implementation of 3D Optical Scanning Technology for Automotive Applications

机译:汽车应用3D光学扫描技术的实现

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摘要

Reverse engineering (RE) is a powerful tool for generating a CAD model from the 3D scan data of a physical part that lacks documentation or has changed from the original CAD design of the part. The process of digitizing a part and creating a CAD model from 3D scan data is less time consuming and provides greater accuracy than manually measuring the part and designing the part from scratch in CAD. 3D optical scanning technology is one of the measurement methods which have evolved over the last few years and it is used in a wide range of areas from industrial applications to art and cultural heritage. It is also used extensively in the automotive industry for applications such as part inspections, scanning of tools without CAD definition, scanning the casting for definition of the stock (i.e. the amount of material to be removed from the surface of the castings) model for CAM programs and reverse engineering. In this study two scanning experiments of automotive applications are illustrated. The first one examines the processes from scanning to re-manufacturing the damaged sheet metal cutting die, using a 3D scanning technique and the second study compares the scanned point clouds data to 3D CAD data for inspection purposes. Furthermore, the deviations of the part holes are determined by using different lenses and scanning parameters.
机译:逆向工程(RE)是一个功能强大的工具,可用于从缺乏文档的物理零件的3D扫描数据生成CAD模型,或者该零件的原始CAD设计已发生变化。与手动测量零件并从头开始在CAD中设计零件相比,将零件数字化并从3D扫描数据创建CAD模型的过程耗时少,并且准确性更高。 3D光学扫描技术是近几年发展起来的一种测量方法,它被广泛用于从工业应用到艺术和文化遗产的领域。它也广泛用于汽车行业,例如零件检查,扫描没有CAD定义的工具,扫描铸件以定义存货(即从铸件表面去除的材料量)CAM模型。程序和逆向工程。在这项研究中,举例说明了两个汽车应用的扫描实验。第一个研究使用3D扫描技术检查从扫描到重新制造受损的钣金切割模具的过程,第二个研究将扫描的点云数据与3D CAD数据进行比较以进行检查。此外,通过使用不同的透镜和扫描参数来确定零件孔的偏差。

著录项

  • 作者

    Kuş, Abdil;

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  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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