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Effects of tool helix angles on machined surface morphology in tilt side milling of cantilever thin-walled plates

机译:工具螺旋角度对悬臂薄壁板倾斜侧研磨机加工表面形态的影响

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For milling the side wall surfaces of cantilever thin-walled plates, to tilt the tool to a proper angle could decrease the cutting force component in the direction of the lowest stiffness of the plates, and then mitigate the chatter, resulting in the improvement of the machined surface finish. The tool helix angle and tilt angle are the two major variables determining the cutting force component, accordingly having significant effects on the machined surface morphology. In this paper, these effects are investigated through experiments with solid end mills of different helix angles. With the surface roughness Ra as the quantification assessment parameter for machined surface morphologies, variations of surface morphologies not only with the tool tilt angles but also with the tool helix angles are investigated. The mathematical model expressing the relation between the tool helix angle and the corresponding optimal tilt angle is built when the quality of the machined surfaces is the best. For better understanding the effects of these two variables on the dynamic vibrations of the workpiecethat directly contributes to the formation of surface morphologies, especially chatter marks, the instantaneous vibration displacements of plates during the milling process are also measured by a laser range sensor, and the effects on the surface roughness are analyzed. This study could provide guidance for process parameters optimization in milling the sidewall surfaces of thin-walled components.
机译:用于铣削悬臂薄壁板的侧壁表面,将工具倾斜到适当的角度可以在板的最低刚度方向上降低切割力分量,然后减轻喋喋不休,导致改善了机械表面饰面。工具螺旋角和倾斜角是确定切割力分量的两个主要变量,因此对机加工表面形态具有显着影响。在本文中,通过实验研究了具有不同螺旋角的实验的这些效果。通过表面粗糙度RA作为用于加工表面形态的定量评估参数,研究了表面形态的变化,不仅具有工具倾斜角度,而且还研究了工具螺旋角度。在机加工表面的质量最好的情况下,建造了表达工具螺旋角和相应的最佳倾斜角之间关系的数学模型。为了更好地理解这两个变量对工程的动态振动的影响直接有助于形成表面形态,尤其是颤动标记,铣削过程中板的瞬时振动位移也通过激光范围传感器测量,以及分析了对表面粗糙度的影响。该研究可以为铣削薄壁部件的侧壁表面的过程参数优化提供指导。

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