面向阵列抛光的叶片分组方法研究

Research on blade grouping method for array polishing

  • 摘要: 针对目前航空发动机叶片铣削后产生变形导致数控阵列抛光前一致性差的现状,提出了一种基于变形特征的叶片分组方法,拟提高同组叶片的加工一致性。首先对批次铣削叶片的弯扭变形范围与趋势进行分析,然后基于主成分分析法确定分组所依据的指标,再结合后续抛光工艺要求确定分组的界限。最后,依据每组组内叶片的变形情况调整叶片的阵列加工刀轨完成多个叶片的同步数控阵列抛光。将该方法应用于批量叶片的分组,并对分组后的叶片进行阵列抛光实验验证,结果表明:使用该方法分组后,组内叶片在主要弯曲方向的变形差异可控制在0.02 mm以内, 满足后续阵列抛光工艺的需求。该方法为叶片加工前的分类提供了一种有效的解决思路。

     

    Abstract: In view of the current situation that the deformation of aero-engine blades after milling results in poor consistency before NC array polishing, a blade grouping method based on deformation characteristics is proposed in this paper to improve the machining consistency of the blades in the same group. Firstly, the range and trend of bending and torsion deformation of batch milling blades were analyzed, and then the index based on principal component analysis(PCA)was determined, and then the limit of grouping was determined according to the requirements of subsequent polishing process. Finally, according to the deformation of the blades in each group, the array machining track of the blades is adjusted to complete the synchronous array polishing of multiple blades. The method was applied to the grouping of multiple blades and the array polishing experiment was carried out. The result shows that the deformation of the blades in the group in the bending direction could be controlled within 0.02 mm after the grouping, which could meet the requirements of the following array polishing. This method provides an effective solution for the classification of blades before machining.

     

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