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Investigation of the Effects of Process Damping on Chatter Instability in Micro End Milling

机译:工艺阻尼对微细铣削颤振不稳定性影响的研究

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In this paper, chatter instability of micro end mill tools is studied by taking into account the process damping effect. The actual geometry of the micro tool including shank, taper part and fluted section is considered in the analysis. Timoshenko beam theory is utilized to consider the shear deformation and rotary inertia effects due to short and thick beam-type structures of each parts of the micro tool. The extended Hamilton's Principle is used to formulate a detailed dynamical model of the rotating micro end mill. The governing equations are solved by assumed mode model expansion. An exact dynamic stiffness method is developed to investigate modal characteristics of the tool including mode shapes to be utilized as base functions for the solution. In micro milling, the process damping affects the chatter especially at low spindle speeds. So, the process damping parameters are used to investigate chatter instability.
机译:本文通过考虑过程阻尼效应来研究微型立铣刀的颤动不稳定性。分析中考虑了微型工具的实际几何形状,包括柄部,锥度部分和凹槽部分。蒂莫申科梁理论被用于考虑由于微型工具的每个部分的短而厚的梁型结构而引起的剪切变形和旋转惯性效应。扩展的汉密尔顿原理用于建立旋转微型立铣刀的详细动力学模型。通过假定的模式模型展开来求解控制方程。开发了一种精确的动态刚度方法来研究工具的模态特征,包括用作解决方案基本功能的模态形状。在微铣削中,过程阻尼会影响颤振,尤其是在低主轴转速下。因此,使用过程阻尼参数来研究颤振的不稳定性。

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