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Electrochemical machining of multiple slots with low-frequency tool vibrations

机译:具有低频工具振动的多个槽的电化学加工

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In electrochemical machining (ECM) of multiple slots, the electrolytic flow field distribution is a critical factor to the process stability, which may draw unwanted abnormal phenomena such as short-circuits. Using finite element method, the flow field distribution in ordinary ECM method of multiple slots was calculated. The simulation results revealed that most of the electrolyte will drain away from the channels between cathode tools. The electrolyte velocity in the machining gap will be reduced and hardly remove the electrolytic products in time. This paper suggested a method for ECM of multiple slots with low-frequency too! vibrations to improve the electrolyte velocities in machining gaps. Tool vibration will improve the refresh of electrolyte in the machining gap and promote the removal rate of electrolytic products. For higher electrolyte velocities, the relationship between section area ratio (SAR) and electrolyte velocities was discussed. The optimized tools height with best SAR was suggested. Experiments were carried out to evaluate the process stability of the ordinary and suggest method. The results verified that electrolyte velocities were improved significantly with low-frequency tool vibrations and promoting SAR. A specimen with 30 slots was fabricated in ECM with low frequency tool vibrations and optimized tools height.
机译:在多个槽的电化学加工(ECM)中,电解流场分布是过程稳定性的关键因素,其可以绘制不需要的异常现象,例如短路。使用有限元方法,计算了多个槽的普通ECM方法的流场分布。仿真结果表明,大多数电解质将消除阴极工具之间的通道。加工间隙中的电解液速度将减小并几乎不能及时去除电解产物。本文表明了一种具有低频的多个插槽ECM的方法!振动改善加工间隙中的电解质速度。工具振动将改善加工间隙中电解质的刷新,并促进电解产物的去除率。对于更高的电解质速度,讨论了截面面积比(SAR)和电解质速度之间的关系。提出了具有最佳SAR的优化工具高度。进行实验以评估普通和建议方法的过程稳定性。结果证实,使用低频工具振动和促进SAR显着提高了电解质速度。具有30个槽的标本在ECM中制造,具有低频工具振动和优化的工具高度。

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