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Providing the Forming Accuracy During the Electrochemical Deep Hole Drilling of a Small Diameter by the Cathode - Tool with a Complete Electro - Isolating Coating

机译:通过带有完整电隔离涂层的阴极工具在小直径电化学深孔钻孔中提供成形精度。

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The problems of forming deep holes with a diameter of less than 1.0 mm by the electrochemical drilling with the use of a hollow cathode-tool having a complete electro-isolating coating are considered. The limitations in providing the hole forming accuracy connected with breaking down the flow hydrodynamics in the processing zone because of decreasing the value of the side inter-electrode gap by the isolating coating thickness are determined. The interrelation between the maximum attainable depth of the hole processing in copper and the thickness of the isolating coating is found. It is proved theoretically and confirmed experimentally that there is a loss of accuracy in the hole forming at a processing depth exceeding the maximum attainable value according to the conditions of the stable anodic dissolving process.
机译:考虑了通过使用具有完整电绝缘涂层的空心阴极工具通过电化学钻孔形成直径小于1.0mm的深孔的问题。确定由于通过隔离涂层厚度减小侧电极间间隙的值而导致与破坏处理区域中的流体流体动力学有关的成孔精度的限制。发现在铜中进行孔加工的最大可达到深度与绝缘涂层厚度之间的相互关系。从理论上证明并通过实验证实,根据稳定的阳极溶解过程的条件,在超过最大可达到值的加工深度处的孔形成中的精度损失。

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