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An approach to modeling the chip thickness and cutter workpiece engagement region in 3 and 5 axis ball end milling

机译:在3轴和5轴球头铣削中对切屑厚度和刀具工件接合区域建模的方法

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摘要

The determination of the chip thickness in 5-axis ball end milling is most fundamental to calculate the cutting force which affects the machining stability and surface quality. In the 5-axis ball end milling, adding to the parameters of the 3-axis milling we have two important parameters which are the tilt and the lead angles. They affect the engagement region and the chip thickness and modify the cutting forces. Based on the true tooth trajectory and the machining surface geometries, this paper presents a new analytical model of the cutter workpiece engagement (CWE) region and the instantaneous undeformed chip thickness in three and five axis ball end milling. To validate the model a mechanistic force model was used, the simulation was compared to the measured one and a good agreement between them was proved.
机译:确定五轴球头立铣刀中切屑厚度是计算影响加工稳定性和表面质量的切削力的最基本方法。在五轴球头立铣刀中,除了三轴铣削的参数外,我们还有两个重要的参数,即倾斜角和超前角。它们影响接合区域和切屑厚度并改变切削力。基于真实的齿轨和加工表面的几何形状,本文提出了一种新的解析模型,用于三轴和五轴球头立铣刀中的刀具工件啮合(CWE)区域和瞬时未变形切屑厚度。为了验证该模型,使用了机械力模型,将仿真与测量的模型进行了比较,并证明了两者之间的良好一致性。

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