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Optimization of material removal strategy in milling of thin-walled parts Optimization of material removal strategy in milling of thin-walled parts

Optimization of material removal strategy in milling of thin-walled parts

  • 期刊名字:哈爾濱工業(yè)大學(xué)學(xué)報(bào)(英文版)
  • 文件大小:
  • 論文作者:李繼博,張定華,吳寶海
  • 作者單位:Key Laboratory of Contemporary Design and Integrated Manufacturing Technology
  • 更新時(shí)間:2023-02-12
  • 下載次數(shù):
論文簡(jiǎn)介

The optimal material removal strategy can improve a geometric accuracy and surface quality of thinwalled parts such as turbine blades and blisks in high-speed ball end milling.The dominant conception in the material removal represents the persistence of the workpiece cutting stiffness in operation to advance the machining accuracy and machining efficiency.On the basis of theoretical models of cutting stiffness and deformation,finite element method(FEM)is applied to calculate the virtual displacements of the thin-walled part under given virtual loads at the nodes of the discrete surface.With the reference of deformation distribution of the thinwalled part,the milling material removal strategy is optimized to make the best of bracing ability of still uncut material.This material removal method is summarized as the lower stiffness region removed firstly and the higher stiffness region removed next.Analytical and experimental results show the availability,which has been verified by the blade machining test in this work,for thin-walled parts to reduce cutting deformation and meliorate machining quality.

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