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Angular Movement Ratio Planning of the Rotary Axes for Shrouded Blisks Multi-Axis EDM

机译:带遮罩的多轴EDM旋转轴的角移动率规划

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Compared to traditional machining approaches, multi-axis EDM has its unique advantages in machining components with complex structures made of difficult-to-cut materials, such as shrouded blisks. The manufacturing process of such complex parts involves both synchronized movements of both linear axes and rotary axes. Due to the geometrical difference between the linear and rotary axes, improper resultant velocity which is the combination of each individual axes, is likely to cause inconsistent discharge gaps. In most multi-axis CNC systems for EDM, angular movement ratio is kept to be constant, which may result in an instable discharge status. In order to ensure the machining stability, this paper proposes an angular movement ratio planning method. In this method, CAD models of both electrode and shrouded blisk will be taken into account. For each rotary axis, a parameter is used to represent the angular movement ratio. The ratios help to obtain a single-axis motion constant discharge gap and weighted average movement ratio algorithm can reduce the feedrate fluctuation of synchronized movements.
机译:与传统的加工方法相比,多轴电火花加工在加工具有复杂结构的零件时具有其独特的优势,这些复杂结构是由难以切割的材料制成的,例如带罩的叶盘。这种复杂零件的制造过程涉及线性轴和旋转轴的同步运动。由于线性轴和旋转轴之间的几何差异,作为每个单独轴的组合的不正确的合成速度可能会导致不一致的放电间隙。在大多数用于EDM的多轴CNC系统中,角运动比保持恒定,这可能会导致不稳定的放电状态。为了保证加工的稳定性,提出了一种角运动比规划方法。在这种方法中,将同时考虑电极和带罩叶盘的CAD模型。对于每个旋转轴,使用一个参数来表示角运动比。这些比率有助于获得单轴运动恒定的放电间隙,而加权平均运动比率算法可以减少同步运动的进给率波动。

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