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Specific Material Removal Rate Calculation in Five-Axis Grinding

机译:五轴研磨中的特定材料去除率计算

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Specific material removal rate (MRR) q' was calculated for five-axis grinding in a virtual machining simulation environment (VMSE). The axis-symmetric tool rotational profile was arc-length parameterized. The twisted grazing curve due to the concurrent translation and rotation in every move was modeled through an exact velocity field and areal MRR density q '', positive in the front of the grazing curve on the tool surface. Variation of q' and equivalent chip thickness h within the instantaneous engagement contour were deduced from q ''. Illustrative results with a five-axis impeller blade finishing simulation are shown. The results were benchmarked against an average q' calculated from the instantaneous MRR from the VMSE. As a function of time, maximum chip thickness h(max) within the extents of contact along the tool profile in every move showed more isolated peaks than corresponding q'(max). Maximum cumulative material removed per unit length Q'(max) along the tool profile from all the moves was calculated to predict axial location of maximum risk of cutter degradation. Q'(max) and h(max) are useful metrics for tool path diagnosis and tool wear analysis.
机译:在虚拟加工模拟环境(VMSE)中的五轴研磨中计算了特定的材料去除率(MRR)Q'。轴对称刀具旋转轮廓是参数化的弧长。由于各个移动中的并发平移和旋转引起的扭曲放牧曲线通过精确的速度场和区域MRR密度Q''模型,在工具表面上的放牧曲线前面正面。从Q''中推断出瞬时接合轮廓内的Q'和等效芯片厚度h的变化。示出了具有五轴叶轮叶片整理模拟的说明性结果。结果与来自VMSE的瞬时MRR计算的平均Q基准测试。作为时间的函数,沿着刀具轮廓的接触范围内的最大芯片厚度h(max)在每个移动的情况下显示比相应的q'(max)更多的隔离峰。计算最大累积材料沿着所有移动的刀具轮廓的每单位长度q'(max)拆除,以预测刀具劣化的最大风险的轴向位置。 Q'(MAX)和H(MAX)是刀具路径诊断和工具磨损分析的有用度量。

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