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Research on the Modeling and Experimenting of Burr Formation Process in Double-edged Micro-plat End Milling Operation

机译:双刃微平台铣削运行中毛刺形成过程的建模与试验研究

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Burrs generated in micro-milling operation have a significant impact on the surface quality and operational performance of the finished microstructures. In order to gain a better recognition of burr generation process, 3-dimensional double-edged micro-flat end milling operation FEM models on Ti-6Al-4V have been established. Burrs occurred in simulation can be classified into three types: entrance burr, exit burr, top burr. Their formation processes and causes are well investigated and analyzed, moreover, a series of experiments are conducted to validate the burr morphologies which are received in simulation. At last, the effect of cutting parameters on top burr size is studied through orthogonal experiment on Ti-6Al-4V, it can be concluded that the axial depth of cut has the greatest effect on top burr size, and the effect of spindle speed on top burr size is the least.
机译:在微铣削操作中产生的毛刺对完成的微观结构的表面质量和操作性能产生显着影响。 为了更好地识别Burr生成过程,已经建立了三维双刃微平端铣削操作FEM模型TI-6AL-4V。 模拟中发生的毛刺可以分为三种类型:入口毛刺,退出毛刺,顶部毛刺。 它们的形成过程和原因是很好的研究和分析,此外,进行了一系列实验以验证在模拟中接受的毛刺形态。 最后,通过Ti-6AL-4V的正交试验研究了切割参数对顶部毛刺尺寸的影响,可以得出结论,切割轴向深度对顶部毛刺尺寸最大,以及主轴速度的效果 顶级毛刺尺寸最少。

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