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Automation of the processes of surface measurement and of deposition by welding for the recovery of rotors of large-scale hydraulic turbines

机译:大型水轮机转子的表面测量和堆焊过程的自动化

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Large-scale hydraulic turbines of electric power plants usually present erosion due to cavitation. Periodically they need to be repaired through material deposition by welding. In this context, the present work deals with the development of an automatic methodology to perform this task. It starts with the automated measurement of the surface affected by cavitation by means of a three lines laser optical sensor, which is used to obtain the mathematical description of both the eroded and original surfaces. Next, this methodology defines the location of the weld beads in each layer and the welding trajectories for a plasma torch with automatic wire feeding to appropriately fill these cavities. Finally, the automated measurement of the recovered surface is performed and analyzed to evaluate its geometry. Practical results of the developed strategy were obtained in a specimen that reproduces the geometry and welding conditions of a typical cavity of one of the blades of a hydraulic turbine. The proposed methodology produced very good results.
机译:发电厂的大型水轮机通常会由于气蚀而出现腐蚀。定期需要通过焊接进行材料沉积来修复它们。在这种情况下,本工作涉及执行该任务的自动方法的开发。它首先通过三线激光光学传感器自动测量受气蚀影响的表面,该传感器用于获得腐蚀表面和原始表面的数学描述。接下来,此方法定义了焊缝在每层中的位置以及等离子炬的焊接轨迹,等离子炬具有自动送丝功能,以适当地填充这些型腔。最后,对回收表面进行自动测量并进行分析以评估其几何形状。在复制了水轮机叶片之一的典型腔体的几何形状和焊接条件的样本中获得了所开发策略的实际结果。所提出的方法产生了很好的结果。

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