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Cutter workpiece engagement region and surface topography prediction in five-axis ball-end milling

机译:刀具工件接合区域和五轴球端铣削的表面形貌预测

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摘要

Based on the machining tool path and the true trajectory equation of the cutting edge relative to the workpiece, the engagement region between the cutter and workpiece is analyzed and a new model is developed for the numerical simulation of the machined surface topography in a multiaxis ball-end milling process. The influence of machining parameters such as the feed per tooth, the radial depth of cut, the angle orientation tool, the cutter runout, and the tool deflection upon the topography are taken into account in the model. Based on the cutter workpiece engagement, the cutting force model is established. The tool deflections are extracted and used in the surface topography model for simulation. The predicted force profiles were compared to the measured ones. A reasonable agreement between the experimental and the predicted results was found.
机译:基于加工工具路径和相对于工件的切削刃的真实轨迹方程,分析了切割器和工件之间的接合区域,开发了一种新模型,用于多轴球中加工表面形貌的数值模拟 - 结束铣削过程。 在模型中考虑了诸如饲料馈送的加工参数,诸如饲料的饲料,径向深度,刀具跳动以及推进时的刀具偏转。 基于刀具工件接合,建立了切割力模型。 刀具偏转被提取并用于仿真的表面形貌模型。 将预测的力分布与测量的力曲线进行比较。 发现实验和预测结果之间的合理协议。

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