• CN:11-2187/TH
  • ISSN:0577-6686

›› 2011, Vol. 47 ›› Issue (7): 191-198.

• 论文 • 上一篇    

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航空发动机叶片电解加工阴极数字化修正模型及其试验研究

朱栋;朱荻;徐正扬   

  1. 南京航空航天大学机电学院
  • 发布日期:2011-04-05

Experimental Study on the Cathode Digital Modification of Turbine Blade in Electrochemical Machining

ZHU Dong;ZHU Di;XU Zhengyang   

  1. College of Mechanical and Electrical Engineering, Nanjing University of Aeronautics and Astronautics
  • Published:2011-04-05

摘要: 叶片是航空发动机的核心零部件,电解加工是加工叶片的重要方法,叶片电解加工工具阴极的精确设计与修正是提高叶片精度的关键技术。采用Levenberg-Marquardt(L-M)优化算法的误差反向传播网络(Back propagation, BP)技术,利用阴极线性修正法的工艺试验数据进行网络训练,建立基于优化BP算法的数字化阴极修正模型。结合自行研制的新型叶片电解加工机床,开展电解加工工艺试验,检验网络模型的正确性。通过三坐标测量机的检测,加工试件在阴极修正后精度有了明显提高,叶盆叶根和叶尖修正部位的精度均提高0.09 mm左右,修正效率提高,说明网络模型能精确计算出阴极型面修正量,网络模型的正确性得到验证。该修正模型能广泛应用于复杂型面电解加工的阴极修正,能起到缩短修正周期和提高叶片电解加工精度的作用。

关键词: 电解加工, 神经网络, 试验研究, 叶片, 阴极修正

Abstract: Turbine blades are crucial components in aero engine and electrochemical machining(ECM) is an important processing method to machine blade. Accurate cathode design and modification of turbine blade in ECM is the key technology for improving the blade precision. Digital cathode modification model, using back propagation (BP) neural network together with Levenberg-Marquardt(L-M) optical algorithm, is developed on the basis of the linear cathode modification method and its experimental data. In order to test the validity of the network model, experimental investigations are carried out by using a self-designed blade ECM tool system. The machining samples are detected by the three coordinates measuring machine, and the results show that the precision is enhanced obviously after cathode modification. The accuracy of blade root, blade tip of blade basin is increased by 0.09 mm and the modification efficiency is improved. It proves that the correction of cathode modification can be finished accurately. This network model can be used to carry out digital cathode modification to those electrodes that have complex surfaces. By this cathode digital modification, the modification cycle can be shortened, and the accuracy of turbine blade in ECM can be enhanced.

Key words: Blade, Cathode modification, Electrochemical machining, Experimental investigation, Neural network

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