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Stability analysis in milling by taking into account the influence of forced vibrations on the actual tool-workpiece engagement conditions

机译:考虑到强制振动对实际工具工件接合条件的影响,铣削稳定性分析

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In order to increase the material removal rate in milling,advanced cutting tools with complex geometry are typically applied under extreme cutting conditions which may trigger undesired chatter vibrations of the machining system.Recently some dynamic milling models were proposed in the literature which take into account the higher geometrical complexity of these tools.In these works,the tool-workpiece engagement conditions are computed from a purely geometric-kinematic analysis of the milling operation.Moreoever,they are kept constant throughout the stability analysis,independently from any possible increase of the axial depth of cut.In many cases the experimental validation of the proposed models is incomplete In this work a novel methodology for assessing milling stability is presented,which is based on the correct linearization of the regenerative perturbations around the actual steady state forced vibrations When the axial depth of cut is progressively increased,the resulting forced vibrations may cause a variation of each tooth-workpiece contact conditions,thus influencing the process dynamic behavior.This effect is more dominant when the degree of symmetry is poor as in the case of variable pitch cutters,when there is significant teeth runout,and when the average chip thickness is concurrently very small as in peripheral milling.The proposed approach for chatter prediction consists of an incremental linear stability analysis which does progressively adapt to the gradually increasing depth of cut up to the stability border.The concept was successfully verified with experimental cutting tests
机译:为了增加在研磨材料去除率,具有复杂几何形状先进刀具极端切削条件下典型地应用于这可以触发system.Recently一些动态铣削模型在文献中提出的加工的不期望的颤振,其考虑到这些tools.In这些作品的更高几何复杂性,刀具 - 工件接合条件被从研磨operation.Moreoever的纯几何运动学分析计算,它们被保持恒定在整个稳定性分析,独立地从轴向的任何可能的增加的cut.In许多情况下深度提出的模型的实验验证是不完整的在这项工作中用于评估铣削稳定性一种新颖的方法,提出,它是基于再生扰动的周围的实际稳态受迫振动的正确线性当轴向切割深度逐渐增加,所产生的力d的振动可能引起的各齿工件接触条件的变化,从而影响处理动态behavior.This效果更占优势时对称程度较差如在可变桨距切割器的情况下,当存在显著齿跳动,和当平均切屑厚度是同时在外围milling.The很小提出了颤预测方法由增量线性稳定性分析,该分析并逐步适应切向上的逐渐增加深度的稳定border.The概念与被成功验证的实验切削试验

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