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Modeling and Simulation for Micromilling Mechanisms

机译:微磨机机构的建模与仿真

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In order to study the micromilling mechanisms, FEM (finite element method) has been used to create models and to conduct simulations for micromilling process. The aluminum alloy material 7075-T6 is selected as the workpiece material for its advantages to make miniaturized components. By analyzing the variation of the milling force and the chip formation in this simulation, the result shows that the critical process parameter of the MUCT (minimum undeformed chip thickness) is that the feed engagement f_r=2μm/z. Simulations with different radial depth of cut a_e have been conducted. According to the chip formation and the cutting force, it can be noticed that the milling force increases with the increase of the radial depth of cut. This study lays a theoretical foundation for further optimizations and experiments of micromilling.
机译:为了研究微磨机机构,FEM(有限元方法)已被用于创造模型并对微米过程进行仿真。选择铝合金材料7075-T6作为工件材料,以使小型化部件的优点。通过分析在该模拟中铣削力和芯片形成的变化,结果表明:施用(最小未变形芯片厚度)的临界过程参数是进料接合F_R =2μm/ z。已经进行了具有不同径向切割A_E的模拟。根据芯片形成和切削力,可以注意到铣削力随着切割径向深度的增加而增加。本研究为进一步优化和微米实验奠定了理论基础。

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