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

机译:优化锯齿立铣刀,减少切割能量并提高稳定性

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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:尽管锯齿立铣刀通常用于机械加工行业,但是有关这些工具的文献仅限于预测方法,而有关选择,设计或优化锯齿形的工作尚未见报道。在本文中,对这些工具的力学和动力学进行了建模和实验验证。力模型采用线性边缘力模型,而时延系数矩阵采用包含多个延迟的一阶半离散化方法进行稳定性分析。参数化建模常用的锯齿波形(即正弦波,圆形和梯形),并使用蛮力搜索和差分演化方法对它们进行优化,以降低铣削力。优化的锯齿立铣刀的优越性能体现在降低铣削力和提高稳定性方面。

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