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Research on the Equivalent Plane Machining with Fix-length Compensation Method in Micro-EDM

机译:微EDM中固定长度补偿方法的等效平面加工研究

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摘要

Micro-EDM milling is an effective machining process for three-dimension (3D) micro-cavity of high hardness materials. Because of the sharp wear of the electrode, fix-length compensation method is proposed, thus results in a cone-shaped electrode. This compensation method can produce a slot with stable depth and conic cross-section. Because of layer by layer strategy in micro structure machining, the challenge for fix-length compensation method is to keep the whole process repeating continuously. This paper gives a double layers' machining strategy in order to maintain the repeated machining for layer units. A concept of equivalent plane is proposed in order to construct a curved surface that can use fix-length compensation method. Then a simplified triangle model is presented in order to get corresponding algorithm for the compensation length of the second slot. Experiment results showed that the error of the compensation length was within 2um. A simulation about the influence of the curved surface's fluctuation on the profile of the machined slot bottom of next layer was performed with Matlab. Simulation results showed that the influence was limited. An experiment of two layers' machining with proposed strategy and algorithm was conducted. The evenness of the machined surface with depth of 66um was within 4um. Therefore, fix-length compensation method can be used to machining 3D cavity.
机译:微EDM铣削是高硬度材料的三维(3D)微腔的有效加工过程。由于电极的尖锐磨损,提出了固定长度补偿方法,从而导致锥形电极。该补偿方法可以产生具有稳定深度和圆锥形横截面的槽。由于通过层策略在微结构加工中,用于固定长度补偿方法的挑战是保持整个过程连续重复。本文提供了双层的加工策略,以维持层单元的重复加工。提出了一种等效平面的概念,以便构造可以使用固定长度补偿方法的弯曲表面。然后呈现简化的三角形模型,以便获得第二槽的补偿长度的相应算法。实验结果表明,补偿长度的误差在2um内。关于曲面对下一层机加工槽底部的曲线的影响的影响的模拟是用MATLAB进行的。仿真结果表明,影响有限。进行了用提出的策略和算法进行两层加工的实验。加工表面的均匀度深度为66um。因此,固定长度补偿方法可用于加工3D腔。

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