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MULTI-SENSOR REVERSE ENGINEERING TECHNIQUE FOR THE ACQUISITION OF CENTRIFUGAL PUMP IMPELLERS

机译:用于采集离心泵叶轮的多传感器逆向工程技术

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The geometrical reconstruction of centrifugal pump impellers is a strategic activity for many manufacturing industries. In particular, the digitalization of internal hydraulic shapes represents the most critical task due to the difficulties in accessing the internal parts of impeller disks. In this paper, an automatic approach to digitize the internal shape of impellers is presented. The methodology is based on the integration of optical and probing methods in order to combine the advantages of both technologies. The developed approach uses an optically tracked hand-held probe designed to digitize, point-by-point, the whole surface of blades. The tracking system is based on a passive device, composed of two stereo cameras, which is used to accurately locate a specific plate, rigidly connected to a probe. The proposed methodology has been validated by experimental tests on primitive surfaces as plane, cylinders and spheres. Nonetheless, the robustness and flexibility of the developed technique has allowed the whole reconstruction of industrial impellers through the acquisition of hundreds of points in few minutes.
机译:离心泵叶轮的几何重建是许多制造业的战略活动。特别地,由于进入叶轮磁盘的内部部分而难以实现,内部液压形状的数字化代表最关键的任务。本文介绍了数字化叶轮内部形状的自动方法。该方法基于光学和探测方法的集成,以结合两种技术的优点。开发的方法使用光学跟踪的手持探头,该探头设计用于数字化,逐个刀片的整个表面。跟踪系统基于由两个立体相机组成的无源装置,其用于精确定位特定板,刚性地连接到探针。所提出的方法是通过原始表面的实验测试验证,作为平面,汽缸和球体。尽管如此,开发技术的稳健性和灵活性使整个工业叶轮的重建通过在几分钟内收购数百个点。

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