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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >Automated laser scanning system for reverse engineering and inspection
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Automated laser scanning system for reverse engineering and inspection

机译:自动化的激光扫描系统,用于逆向工程和检查

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摘要

Recently, laser scanners have been used more often for inspection and reverse engineering in industry, such as for motors, electronic products, dies and molds. However, due to the lack of efficient scanning software, laser scanners are usually manually operated. Therefore, the tasks that involve inspection and reverse engineering processes are very expensive. In this research, we propose an automated measuring system for parts having a freeform surface. In order to automate a measuring process, appropriate hardware system as well as software modules are required. The hardware system consists of a laser scanning device and setup fixtures that can provide proper location and orientation for the part to be measured. The software modules generate optimal scan plans so that the scanning operation can be performed accordingly. In the scan planning step, various scanning parameters are considered in the generation of optimal scan paths, such as the view angle, depth of field, the length of the stripe, and occlusion. In the scanning step, the generated scan plans are downloaded to the industrial laser scanner and the point data are captured automatically. The measured point data sets are registered automatically and the quality of point data is evaluated by checking the difference between the CAD model and the measured data. To demonstrate an automated measuring system, a motorized rotary table with two degrees of freedom and a CNC-type laser scanner with four degrees of freedom are used.
机译:近来,激光扫描仪在工业中更经常用于检查和逆向工程,例如用于马达,电子产品,模具和模具。但是,由于缺少高效的扫描软件,通常需要手动操作激光扫描仪。因此,涉及检查和逆向工程过程的任务非常昂贵。在这项研究中,我们提出了一种用于具有自由曲面的零件的自动测量系统。为了使测量过程自动化,需要适当的硬件系统以及软件模块。硬件系统由激光扫描设备和设置夹具组成,这些夹具可以为要测量的零件提供正确的位置和方向。软件模块生成最佳扫描计划,以便可以相应地执行扫描操作。在扫描计划步骤中,在生成最佳扫描路径时会考虑各种扫描参数,例如视角,景深,条纹的长度和遮挡。在扫描步骤中,将生成的扫描计划下载到工业激光扫描仪中,并自动捕获点数据。测量点数据集会自动注册,并通过检查CAD模型和测量数据之间的差异来评估点数据的质量。为了演示自动测量系统,使用了具有两个自由度的电动旋转工作台和具有四个自由度的CNC型激光扫描仪。

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