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Optimization of Serrated End Mills for Reduced Cutting Energy and Higher Stability

机译:锯齿末端铣刀的优化,降低切削能量和更高稳定性

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Although serrated end mills are commonly used in machining industry, the literature on these tools is limited to predictive methods while no work has been reported on selection, design or optimization of serration forms. In this paper, mechanics and dynamics of these tools are modeled and experimentally verified. Linear edge-force model is adopted for force modeling whereas first order semi-discretization method including multiple delays with time-averaged coefficient matrices is used for stability analysis. Frequently used serration waveforms, i.e. sinusoidal, circular and trapezoidal are modeled parametrically and optimized for reduced milling forces using the Brute Force Search and the Differential Evolution Method. The superior performance of the optimized serrated end mills is demonstrated in terms of reduced milling forces and increased stability.
机译:尽管锯齿终端铣刀通常用于加工行业,但这些工具的文献仅限于预测方法,同时没有关于选择,设计或优化锯齿形式的工作。在本文中,这些工具的力学和动力学是建模和实验验证的。采用线性边缘力模型用于力建模,而包括具有时间平均系数矩阵的多阶半离散化方法用于稳定性分析。通常使用的锯纹波形,即正弦,圆形和梯形,用于参数模拟并使用蛮力搜索和差分演化方法对铣削力的减少而优化。优化的锯齿状端铣刀的优异性能在降低的铣削力和增加的稳定性方面进行了说明。

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