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Large allowance electrochemical turning of revolving parts using a universal cylindrical electrode

机译:使用通用圆柱电极的旋转部件的大允许电化学转动

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摘要

There are many large-scale revolving parts in aerospace engines, which usually require relatively large machining allowances to ensure production of the necessary shapes and sizes. Efficient removal of the machining allowances from such large scale revolving parts, especially for hard-to-cut materials, represents a challenge for traditional mechanical processing. In this research, electrochemical turning with a universal cylindrical electrode is proposed as an efficient method to remove the large machining allowance of revolving parts. Lateral flow and internal flow patterns are exploited to ensure timely removal of electrolysis products and Joule heat. The electric field distribution shows that the current in the machining area increases significantly for the method. The flow field distribution shows that a more uniform flow velocity distribution can be obtained using an internal flow pattern. Experiments were performed to verify the proposed method. The results show that the internal flow pattern allows for faster feed rates and more stable processing, and the material removal rate may be improved significantly through use of an optimized flow pattern, especially for work-pieces with a large machining allowance. To demonstrate application, three differently shaped revolving structures were machined successfully with a radial removal allowance of 10 mm.
机译:航空航天发动机中有许多大型旋转部件,通常需要相对大的加工额度,以确保生产必要的形状和尺寸。从这种大规模旋转部件的高效移除加工余量,特别是对于难以切割的材料,代表了传统机械加工的挑战。在该研究中,提出了具有通用圆柱电极的电化学转动作为去除旋转部件的大加工余量的有效方法。利用横向流动和内部流动图案,以确保及时去除电解产物和焦耳热。电场分布表明,对于该方法,加工区域中的电流增加显着增加。流场分布表明,可以使用内部流动图案获得更均匀的流速分布。进行实验以验证所提出的方法。结果表明,内部流动模式允许更快的进料速率和更稳定的加工,并且通过使用优化的流动模式,可以显着提高材料去除率,特别是对于具有大加工余量的工件。为了证明应用,成功加工三种不同形状的旋转结构,径向去除余量为10mm。

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