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首页> 外文期刊>Journal of Manufacturing Processes >Cutter-workpiece engagement calculation in 3-axis ball end milling considering cutter runout
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Cutter-workpiece engagement calculation in 3-axis ball end milling considering cutter runout

机译:考虑刀具跳动的三轴球头立铣刀中刀具的啮合计算

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摘要

In order to obtain desired surface quality, the machining parameters such as feed per tooth, spindle speed, axial and radial depth of cut have been selected appropriately by using a process model. The surface quality and the process stability are related to cutting forces which are more influenced by the instantaneous chip thickness and the cutter-workpiece engagement (CWE) region. To reach a high accuracy in cutting forces calculation it is primary to determinate the start and the exit angles on the (CWE) region. Unlike previous studies which calculated the (CWE) numerically. This paper proposes an analytical model to calculate the (CWE) region by determining the cutting instantaneous flute entry and exit angles. These locations are calculated according to the heights of axial depth of cut. The second proposed approach is to calculate the instantaneous undeformed chip thickness. These solutions are used to calculate accurately the cutting forces in the case of the 3 axis milling operations.To validate the model, a mechanistic cutting forces model was simulated and compared to the measured one. A good agreement between them was proved.
机译:为了获得所需的表面质量,已使用工艺模型适当选择了加工参数,例如每齿进给量,主轴转速,轴向和径向切削深度。表面质量和工艺稳定性与切削力有关,切削力更多地受瞬时切屑厚度和刀具与工件接合(CWE)区域的影响。为了在切削力计算中达到高精度,首先要确定(CWE)区域的起始角和出口角。与先前的研究不同,该研究通过数值计算(CWE)。本文提出了一种解析模型,通过确定切削瞬时凹槽的进,出口角来计算(CWE)区域。这些位置是根据轴向切削深度的高度计算的。提出的第二种方法是计算瞬时未变形切屑厚度。这些解决方案可用于精确计算3轴铣削操作中的切削力。为验证模型,对机械切削力模型进行了仿真并与实测模型进行了比较。他们之间达成了良好的协议。

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