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A reverse engineering based approach for the repair of LP compressor fan blade

机译:基于逆向工程的LP压缩机风扇叶片修复方法

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The aim of this research is to develop an adaptive machining strategy to restore worn fan blades. Since each worn fan blade has its unique profile, a reliable restoration model is essential and can increase the effectiveness and accuracy of the machining result. In comparison with other studies of reverse engineering which focus on enhancing the accuracy of the free-form geometry only with the surface scanning data, the approach introduced in this paper gives a different view in which the reversed engineered fan blade should be based on both its surface character and the design principle. The idea that is applied on the surface measuring strategy and data process algorithm is airfoil segment based which is the basic principle of the blade design. So, a reliable CAD model can be generated with the assist of the design principle. Moreover, this approach can further optimize the blade machining result. A computer simulation system was established. The test raw data was collected from a compressor fan blade which is available in aero engines. The simulation result showed that the restored area was in a reasonable shape and the rest of reconstructed geometry was in accordance with the real part with high accuracy.
机译:本研究的目的是开发一种自适应加工策略,可以恢复磨损的风扇叶片。由于每个磨损的风扇刀片具有其独特的轮廓,因此可靠的恢复模型至关重要,可以提高加工结果的有效性和准确性。与逆向工程的其他研究相比,专注于仅通过表面扫描数据提高自由形态的准确性,本文介绍的方法提供了不同的视图,其中反向工程风扇刀片应基于其表面特征和设计原理。应用于表面测量策略和数据处理算法的想法是基于翼型的翼型段,这是刀片设计的基本原理。因此,可以通过设计原理的辅助来生成可靠的CAD模型。此外,这种方法可以进一步优化刀片加工结果。建立了计算机仿真系统。测试原始数据从Aero发动机中提供的压缩机风扇刀片收集。仿真结果表明,恢复的区域处于合理的形状,其余的重建几何形状具有高精度的实际部分。

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