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Kinematic simulation to investigate the influence of the cutting edge topography when ball end micro milling

机译:运动仿真,探讨圆珠片微铣时切削刃地形的影响

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During the ball end micro milling of material measures, the cutting edge topography is imaged on the machined workpiece. The influence of the chipping on the resulting surface quality is much more dominant than other kinematic effects. In this simulative study, a model is built that is able to predict the correlation between the cutting edge topography and the resulting workpiece topography. Thus, the mentioned correlation can be investigated without overlaying effects of material separation or measurement uncertainties, which are unavoidable in an experimental study. The model has been validated based on four artificial chippings.
机译:在球末微铣削材料措施期间,切削刃地形在加工工件上成像。 碎裂对所得表面质量的影响比其他运动效应更大。 在该模拟研究中,建立了一种模型,其能够预测切削刃地形与所得工件地形之间的相关性。 因此,可以研究提到的相关性而不覆盖材料分离或测量不确定性的效果,这在实验研究中是不可避免的。 该模型已根据四个人工碎屑验证。

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