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A modeling and prediction method for plunge cutting force considering the small displacement of cutting layer

机译:考虑切割层小位移的冲击切割力的建模与预测方法

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摘要

In the process of plunge milling, the main cutting force is along the axial direction, and usually, the machining system has good axial rigidity, so it can withstand large cutting loads. This characteristic makes plunge milling particularly suitable for high-efficiency rough machining and semi-finishing of difficult-to-cut materials. The cutting force in the plunge milling process is usually large, and when the process parameters are not selected properly, the plunge milling is prone to the back-off phenomenon. In view of the characteristics of large cutting force and high cutting temperature in Inconel 718 plunge milling process, considering the small displacement of the actual tool tip caused by cutting force and cutting vibration, this article establishes a plunge milling force model based on the combination of analytical method and three-dimensional finite element method. The micro-displacement caused by vibration is obtained through dynamic modeling and modal test methods. Combined with the macro-displacement of cuter back-off under the action of the cutting force during the single-tooth run-in and run-out process, the modified cutting layer parameters are obtained, and optimized cutting force of plunge milling is obtained.
机译:在进展铣削过程中,主切割力沿轴向方向,通常,加工系统具有良好的轴向刚度,因此它可以承受大的切削载荷。这种特性使得暴力铣削特别适用于高效粗加工和难以切割材料的半精加工。平面铣削过程中的切割力通常很大,并且当未正确选择工艺参数时,PLONGE铣削容易发生回退现象。鉴于大型切削力和高切削温度的特点,在第718型铣削过程中,考虑到由切割力和切割振动引起的实际工具尖的小位移,本文基于组合建立了一个平面铣削力模型分析方法与三维有限元法。通过动态建模和模态测试方法获得由振动引起的微偏移。结合在单齿载入和输出过程中切割力的切割力的作用下切割器退缩的宏观位移,得到改性的切割层参数,获得了PLONEGE铣削的优化切割力。

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