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Study on the cantilever grinding process of aero-engine blade

机译:航空发动机叶片悬臂磨削工艺的研究

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摘要

An aero-engine blade is the typical thin-walled workpiece with low rigidity. The machining accuracy of the aero-engine blade with sculptured surfaces has been a research focus in the aviation industry. This article presents a new cantilever grinding process for the high precision machining of aero-engine blade. Only one end of a blade is fixed and the other end is free in order to eliminate the deformation of blade caused by over-positioning. Moreover, the vibration of aero-engine blade can be reduced so that the surface quality of blade can be improved in the grinding. The grinding parameters are optimized for the low deflections of blade. The types of tool path are also discussed in this article. Finally, the computer numerical control machining examples are implemented. The measurement results show that the profile errors of suction/pressure surface machined by the proposed process do not exceed 0.02 mm. And the machining accuracy of leading/trailing edge with a radius of about 0.05 mm is acceptable.
机译:航空发动机叶片是刚性低的典型薄壁工件。具有雕刻表面的航空发动机叶片的加工精度一直是航空工业的研究重点。本文提出了一种用于航空发动机叶片高精度加工的新型悬臂磨削工艺。刀片只有一端固定,另一端是自由的,以消除刀片因过度定位而引起的变形。此外,可以减小航空发动机叶片的振动,从而可以在研磨中改善叶片的表面质量。磨削参数针对刀片的低挠度进行了优化。本文还将讨论工具路径的类型。最后,实现了计算机数控加工实例。测量结果表明,所提出的方法加工的吸力/压力面的轮廓误差不超过0.02 mm。并且半径为约0.05mm的前缘/后缘的加工精度是可以接受的。

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