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A direct analytical solution to the tool design problem in electrochemical machining under steady state conditions

机译:稳态条件下电化学加工中刀具设计问题的直接解析解决方案

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摘要

A method for the direct computation of two-dimensional electrochemical machining tool designs is described. The required workpiece geometry is represented by a Fourier series. Conformal transformation is then used to express the tool shape in series form, each term being a direct analytical function of the corresponding workpiece harmonic. Tool designs are thus achieved without numerical iteration. The model has been experimentally validated for a required workpiece geometry consisting of two harmonics, for which a tool was designed and manufactured. An In 718-15 per cent NaCl workpiece-electrolyte system was used to produce a machined surface, whose Fourier transform was obtained. The measured and predicted harmonic amplitudes agree closely. This harmonic design method is also shown to give insight into the relationship and limitations between tool design and achievable workpiece detail.
机译:描述了一种直接计算二维电化学加工工具设计的方法。所需的工件几何形状由傅立叶级数表示。然后使用保形变换以系列形式表示刀具形状,每个术语都是相应工件谐波的直接分析函数。因此,无需进行数值迭代即可实现工具设计。该模型已针对包含两个谐波的所需工件几何形状进行了实验验证,并为此设计并制造了工具。使用In 718-15%NaCl工件-电解质系统生产机加工表面,并获得其傅里叶变换。测量和预测的谐波幅度非常一致。还显示了这种谐波设计方法,可以深入了解刀具设计与可实现的工件细节之间的关系和局限性。

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