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Remanufacturing Shaping System Based on Pulsed Plasma Arc Welding

机译:基于脉冲等离子弧焊的再制造成型系统

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Based on the pulsed plasma arc welding (PPAW), a rapid remanufacturing shaping system, including a structured light scanning reverse engineering (RE) system, a robot system and a PPAW source system have been developed. The new rapid remanufacturing shaping system can rapidly and accurately repair the worn parts with different damaged degrees and thus extend their life cycle. In the present paper, the whole process of repairing worn parts is described. Firstly, the scanning model of a worn part is obtained by using RE system based on reconstructing approach. Compared with standard CAD model in the undamaged setting, the surface profile and the extent of damage area are obtained. Secondly, the weld repair path is designed by slicing the point cloud model of damage area. This path consists of multilayer parallel lines that produce parallel overlapped weld beads which cover the damaged area. By off-line programming techniques, the robot executable program as document format is transmitted to the robot controller for repairing worn parts. Finally, the weld repair experiments on worn steel plane plate and damaged column are performed to evaluate the remanufacturing system.
机译:基于脉冲等离子体弧焊(PPAW),已经开发了一种快速再制造的成形系统,包括结构化光扫描逆向工程(RE)系统,机器人系统和PPAW源系统。新的快速再制造整形系统可以快速准确地修复具有不同损坏度的磨损部件,从而延长它们的生命周期。在本文中,描述了修复磨损部件的整个过程。首先,通过使用基于重建方法的RE系统获得磨损部分的扫描模型。与标准CAD模型相比,在未损坏的设置中,获得表面轮廓和损伤区域的程度。其次,焊接修复路径是通过切割损伤区域的点云模型来设计的。该路径由多层平行线组成,产生覆盖受损区域的平行重叠焊缝。通过离线编程技术,作为文档格式的机器人可执行程序被发送到机器人控制器以修复磨损部件。最后,进行磨损钢平面板和损坏柱上的焊接修复实验以评估再制造系统。

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