Using the analytical expression of chip thickness, the chip profile is obtained. As a result, the geometric parameters used in the instantaneous cutting force prediction and feedrate optimization are provided.
利用切屑厚度的解析式计算切屑轮廓,为实现球头铣刀加工模具型腔复杂曲面瞬时切削力的预测和进给速度的优化提供了必要的几何参数。
参考来源 - 模具型腔高效数控加工策略及参数优化研究·2,447,543篇论文数据,部分数据来源于NoteExpress
在径向未变形切屑厚度公式的推导中,考虑了刀具进给运动的三维特点。
The three dimensional characteristic of cutter feed motion is considered in the formulation of undeformed radial chip thickness.
建立了三维切削下切屑厚度的数学表示,提出了递延累加切屑厚度计算算法。
The calculation formula of the chip thickness was established under 3D cutting process and an uncontinuable adding up calculation algorithm of the chip thickness was proposed.
在切削实验中,可对切屑厚度、刀具磨损及螺纹等的形貌进行观察并测量其尺寸。
In cutting experiments, it can be observed and measured that the chip thickness, the tool wear, the screw thread teeth, and so on.
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