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Prediction and Experimental Validation of Cutting Force for Bull-Nose End Mills with Lead Angle

机译:导角牛鼻立铣刀切削力的预测和实验验证

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摘要

This study focuses on cutting force predictions with the tool-workpiece inclination angle in bull-nose milling based on the semimechanistic force model. By analyzing kinematics and mechanics of the bull-nose end mills during cutting, force expressions including lead angle are stated and the model is exerted on each discrete element as oblique cutting with coordinate transformation and numerical integration to obtain the dynamic cutting force components. An improved identification method considering speed variations along the tool axis is applied to calibrate coefficients. Coefficients are regarded as the function of each elemental elevation. Then, a geometry-based method to acquire cutter workpiece engagement (CWE) is proposed. Also acquisition of accurate start and exit angles on each slice is deliberated elaborately for cutters with lead or tilt angle in milling processes. Thereby, to verify the validity of the force prediction model and start-exit angle acquisition method, experiments with variable lead angles are conducted under different axial immersions. The results reveal that the presented model and approaches can predict cutting forces with high accuracy. Finally, the cutting force components under different cutter postures and conditions are analyzed to provide instructions for parameter selections.
机译:这项研究的重点是基于半机械力模型的牛鼻铣削中刀具倾斜角度的切削力预测。通过分析牛头立铣刀在切削过程中的运动学和力学原理,给出了包括超前角在内的力表达式,并将该模型作为具有坐标变换和数值积分的斜切削作用在每个离散元件上,以获得动态切削力分量。考虑到沿刀具轴速度变化的一种改进的识别方法被应用于校准系数。系数被视为每个元素高度的函数。然后,提出了一种基于几何的方法来获取刀具工件啮合度(CWE)。此外,对于铣削过程中具有超前角或倾斜角的刀具,还精心研究了在每个切片上获取准确的起始角和出口角。从而,为了验证力预测模型和起始角获取方法的有效性,在不同的轴向浸入下进行了可变导角的实验。结果表明,所提出的模型和方法可以高精度地预测切削力。最后,分析不同刀具姿态和条件下的切削力分量,以提供参数选择说明。

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