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VOXEL BASED CUTTING FORCE SIMULATION OF BALL END MILLING CONSIDERING CUTTING EDGE AROUND CENTER WEB

机译:考虑圆心切入中心网的基于VOXEL的球头铣削切削力模拟

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A new method, which accurately predicts cutting force in ball end milling considering cutting edge around center web, has been proposed. The new method accurately calculates the uncut chip thickness, which is required to estimate the cutting force by the instantaneous rigid force model. In the instantaneous rigid force model, the uncut chip thickness is generally calculated on the cutting edge in each minute disk element piled up along the tool axis. However, the orientation of tool cutting edge of ball end mill is different from that of square end mill. Therefore, for the ball end mill, the uncut chip thickness cannot be calculated accurately in the minute disk element, especially around the center web. Then, this study proposes a method to calculate the uncut chip thickness along the vector connecting the center of the ball and the cutting edge. The proposed method can reduce the estimation error of the uncut chip thickness especially around the center web compared with the previous method. Our study also realizes to calculate the uncut chip thickness discretely by using voxel model and detecting the removal voxels in each minute tool rotation angle, in which the relative relationship between a cutting edge and a workpiece, which changes dynamically during tool rotation. A cutting experiment with the ball end mill was conducted in order to validate the proposed method. The results showed that the error between the measured and predicted cutting forces can be reduced by the proposed method compared with the previous method.
机译:提出了一种新的方法,该方法可以准确地预测考虑中心腹板周围切削刃的球头铣削中的切削力。新方法可以准确计算未切屑的厚度,这是通过瞬时刚度模型估算切削力所必需的。在瞬时刚度模型中,未切削切屑厚度通常是在沿刀具轴堆积的每个微小圆盘元件的切削刃上计算的。但是,球头立铣刀的刀刃方向与方头立铣刀的刀刃方向不同。因此,对于球头立铣刀,无法在微小的圆盘元件中准确计算出未切屑的厚度,尤其是在中心腹板周围。然后,本研究提出了一种方法,该方法沿着连接球的中心和切削刃的矢量计算未切削切屑的厚度。与以前的方法相比,所提出的方法可以减少未切屑厚度的估计误差,特别是在中心腹板周围。我们的研究还实现了通过使用体素模型并检测每分钟刀具旋转角中的去除体素来离散计算未切削切屑厚度,其中刀沿和工件之间的相对关系在刀具旋转过程中动态变化。为了验证所提出的方法,使用了球头立铣刀进行了切削实验。结果表明,与以前的方法相比,所提出的方法可以减小测量的切削力和预测的切削力之间的误差。

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