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Dry-ED milling of micro-scale contours with high-speed rotating tungsten tube electrodes

机译:用高速旋转钨管电极干式铣削微尺度轮廓

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This paper presents machining results for dry-ED milling of micro-scale contours by use of a new machine tool, including a relaxation generator, designed for dry-EDM. To implement the dry-ED milling process tungsten tube electrodes were used. The gas is injected through the tubular tool electrode under high pressure. Additionally, a high-speed EDM spindle was used to overcome process instabilities and increase the material removal rate due to better flushing conditions. Further, fluid simulations of the flushing conditions are presented in this paper. It is found that the use of gaseous dielectrics enables much better machining results in terms of shape accuracy and tool wear. The simulations provide new insights in the flushing conditions when using gaseous dielectrics. The calculated fluid flow pattern shows a great agreement with the observed depositions of reattached molten material on the tool and workpiece surface. The results presented as well as the hardware introduced enable the industrial application of dry-EDM for the first time.
机译:本文介绍了通过使用新的机床,包括用于干式EDM的松弛发生器的微尺度轮廓干式铣削微级轮廓的加工结果。实施干ED铣削过程钨管电极。在高压下通过管状工具电极注入气体。另外,使用高速EDM主轴来克服工艺稳定性并由于更好的冲洗条件而增加材料去除率。此外,本文提出了冲洗条件的流体模拟。结果发现,在形状精度和工具磨损方面,使用气态电介质的使用使得能够更好的加工结果。使用气态电介质时,模拟在冲洗条件下提供了新的见解。计算出的流体流动图案显示了与在工具和工件表面上观察到的重新连接的熔融材料的沉积非常一致。介绍的结果以及硬件引入首次启用干式EDM的工业应用。

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