Method of scanning thin surfaces in repairing gas turbine blades

D. I. Kotlyar, A. N. Lomanov
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Abstract

Improving the efficiency of weld overlay repair of gas turbine blades by developing and implementing a method of scanning complex curved surfaces of gas turbine blades directly on the machine is the aim of this work. The paper proposes an approach to scanning a blade with a computer vision system mounted near the nozzle on the same machine that is used for direct metal deposition. The computer vision system consists of a triangulation laser sensor and a camera. The proposed algorithm is adaptive to the mechanical condition of the equipment used for scanning and metal deposition. The scans obtained from the machine vision system have precision better than 0.05mm in 67.56% of cases, and precision better than 0.1mm in 95.75% of cases. That accuracy, with a laser spot of 0.5 to 1.0mm, is sufficient for further use of the scans in repairing gas turbine blades. The proposed approach makes it possible to speed up the preparation of technological programs for direct metal deposition by 10 times compared to the manual scanning method.
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维修燃气轮机叶片时扫描薄表面的方法
通过开发和实施一种直接在机器上扫描燃气轮机叶片复杂曲面的方法,提高燃气轮机叶片堆焊修复的效率是这项工作的目的。本文提出了一种利用计算机视觉系统扫描叶片的方法,该系统安装在用于直接金属沉积的同一台机器的喷嘴附近。计算机视觉系统由一个三角测量激光传感器和一个摄像头组成。所提出的算法能够适应用于扫描和金属沉积的设备的机械条件。从机器视觉系统获得的扫描结果中,67.56%的精度优于 0.05 毫米,95.75%的精度优于 0.1 毫米。在激光光斑为 0.5 至 1.0 毫米的情况下,这一精度足以将扫描结果进一步用于维修燃气轮机叶片。与手动扫描方法相比,所提出的方法可将直接金属沉积技术程序的准备速度提高 10 倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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