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Flow Field Design and Experiments on Pulse ECM of Large-lead Ball Nut Raceway During Tool Cutting-out Stage

机译:大铅球螺母滚道切出阶段脉冲ECM的流场设计与实验

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A novel process of pulse electrochemical machining (PECM) using a spherical tool cathode with inner slant jet has been proposed and preliminary verified for the machining of large-lead ball nut raceway, in which the electrolyte flow field uniformity plays a very important role in achieving high machining accuracy and process stability. This paper is focusing on the flow field design during tool cutting-out stage, which is considered necessity for realizing one-pass PECM of raceway. Difficulties of flow field design lie in the nonuniform flow field distribution caused by the sudden change of electrolyte flow and the possible deformation or movement of the spike. The method using sacrifice metal was adopted and two novel types of fastening way (the welding type and the magnetic attraction type) were presented to solve the problems existing in conventional methods using sacrifice metal. Verification experiments were conducted and the results show that stable PECM can be achieved using these two types of method. It's also found that the magnetic attraction type of method has better performance of process stability and adaptability than that of the welding type.
机译:提出了一种利用内斜射流球形工具阴极进行脉冲电化学加工(PECM)的新方法,并初步验证了该加工方法对大引线滚珠螺母滚道的加工,其中电解质流场的均匀性在实现大电流方面起着非常重要的作用。高加工精度和工艺稳定性。本文着眼于刀具切出阶段的流场设计,这被认为是实现滚道单程PECM的必要条件。流场设计的困难在于电解质流的突然变化以及尖峰的可能变形或运动引起的不均匀流场分布。采用牺牲金属的方法,提出了两种新型的紧固方式(焊接方式和磁吸方式),以解决传统的牺牲金属方法存在的问题。进行了验证实验,结果表明,使用这两种类型的方法可以实现稳定的PECM。还发现,与焊接方式相比,磁性吸引方式具有更好的工艺稳定性和适应性。

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