论文标题

基于3D视觉测量的航空发动机低压涡轮轴的自动组装

Automatic assembly of aero engine low pressure turbine shaft based on 3D vision measurement

论文作者

Wang, Jiaxiang, Chen, Kunyong

论文摘要

为了解决航空涡轮轴组件的低自动化问题以及非接触性高精度测量的难度,本文提出了一种用于航空引擎关键组件的结构化光双目测量技术。结合三维点云数据处理和匹配算法的组装位置,在涡轮轴对接过程中对轴孔组装姿势的高精度测量得以实现。首先,根据PCA投影和边缘云聚类对螺栓表面上的螺纹曲线进行了分割,并且使用Hough变换来模拟三维螺纹曲线。然后构建了预处理的二维凸壳以分割关键孔位置特征,并根据RANSAC方法拟合通过分割获得的安装表面和孔位置。最后,使用了几何特征匹配,建立了涡轮轴组件的评估指数以优化姿势。安装表面匹配的最终测量精度小于0.05mm,基于最小ANCE优化的安装孔匹配的测量精度小于0.1度。测量算法在某种类型的航空引擎低压涡轮转子的自动组装测试床上实现。在狭窄的安装空间中,涡轮轴组件的组装过程,例如轴孔的自动对齐和对接,安装接缝的自动加热和温度测量以及两支枪的自动拧紧,在窄的安装空间指导,实时检查和组装结果评估中实现。

In order to solve the problem of low automation of Aero-engine Turbine shaft assembly and the difficulty of non-contact high-precision measurement, a structured light binocular measurement technology for key components of aero-engine is proposed in this paper. Combined with three-dimensional point cloud data processing and assembly position matching algorithm, the high-precision measurement of shaft hole assembly posture in the process of turbine shaft docking is realized. Firstly, the screw thread curve on the bolt surface is segmented based on PCA projection and edge point cloud clustering, and Hough transform is used to model fit the three-dimensional thread curve. Then the preprocessed two-dimensional convex hull is constructed to segment the key hole location features, and the mounting surface and hole location obtained by segmentation are fitted based on RANSAC method. Finally, the geometric feature matching is used the evaluation index of turbine shaft assembly is established to optimize the pose. The final measurement accuracy of mounting surface matching is less than 0.05mm, and the measurement accuracy of mounting hole matching based on minimum ance optimization is less than 0.1 degree. The measurement algorithm is implemented on the automatic assembly test-bed of a certain type of aero-engine low-pressure turbine rotor. In the narrow installation space, the assembly process of the turbine shaft assembly, such as the automatic alignment and docking of the shaft hole, the automatic heating and temperature measurement of the installation seam, and the automatic tightening of the two guns, are realized in the narrow installation space Guidance, real-time inspection and assembly result evaluation.

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