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Instantaneous Cutting Force Model in High-Speed Milling Process with Gyroscopic Effect

机译:具有陀螺效应的高速铣削过程中瞬时切割力模型

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High-speed milling (HSM) has advantages in high productivity high precision and low production cost. Thus it can be widely used in the manufacture industry. However, when the speed of spindle-tool reaches a higher speed range, the gyroscopic effect will become an important part of its stable milling. In this paper, a dynamics model of HSM system was proposed considering the influence of gyroscopic moment due to high rotating speed of end milling. Finite element model (FEM) is used to model the dynamics of a spindle-milling system. It obtains the trajectory of central point in face milling with considering gyroscopic effects through the dynamics model at high speeds. Then the cutting force model will be corrected by the trajectory of face milling. So it can provide a basis for stability prediction of high speed milling.
机译:高速铣削(HSM)具有高生产率高,生产率低的优点。因此,它可以广泛用于制造业。然而,当主轴工具的速度达到更高的速度范围时,陀螺效果将成为其稳定铣削的重要组成部分。本文提出了陀螺仪由于端铣的高旋转速度的影响,提出了HSM系统的动力学模型。有限元模型(FEM)用于模拟主轴铣削系统的动态。考虑到高速动力学模型考虑陀螺效果,获得面部研磨中央点的轨迹。然后将通过面铣的轨迹校正切割力模型。因此,它可以为高速铣削的稳定性预测提供基础。

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