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Video based Process Observations of the Pulse Electrochemical Machining Process at High Current Densities and Small Gaps

机译:基于视频的高电流密度和小间隙的脉冲电化学加工过程的过程观察

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Pulse Electrochemical Machining (PECM), a nontraditional process, using pulse-lengths in the low millisecond range as well as feed overlaid mechanical vibration, allows more precise tolerances and geometric precision through narrowing the working gap compared to conventional sinking ECM. With small working gaps in ranges down to 10μm, the anodic shape evolution during machining is getting difficult to monitor. Therefore understanding the shaping phenomena during the PECM process is key factor in achieving precision during the manufacturing of dies and molds, as well as precision parts in e.g. automotive or aircraft industry. In this contribution an experimental approach towards visual in-process observations of the PECM shaping process during the use of mechanical vibrations up to 50Hz and high pulsed current densities will be presented. Recording the process with a precisely clocked high speed camera system allowing precise μs shutter times, visual observations are conducted and being used as input for detailed downstream data analysis. The experimental study incorporates one of the most widely used flushing conditions in PECM as well as an outlook into the comparison between recorded in-process data and a static FEM simulation based on the monitored shape are given. In all experiments stainless steel of type AISI 304 (X5CrNi18–10) is used as anode and cathode material and for all PECM experiments a commercially available PEMCenter8000 with sodium nitrate as electrolyte was used. The concept presented will help to better link experiment and modelling of the PECM process, by simultaneously providing process relevant electrochemical data as well as the directly corresponding geometric shaping information during experiments.
机译:与传统的沉没式ECM相比,脉冲电化学加工(PECM)是一种非传统工艺,它使用低毫秒范围的脉冲长度以及加料覆盖的机械振动,从而通过缩小工作间隙,可以提供更精确的公差和几何精度。由于加工间隙小至10μm,因此难以监控加工过程中的阳极形状变化。因此,理解PECM过程中的成形现象是在模具制造过程中以及在例如模具制造中的精密零件中获得精度的关键因素。汽车或飞机行业。在此贡献中,将提出一种实验方法,用于在使用高达50Hz的机械振动和高脉冲电流密度的过程中,对PECM成形过程进行可视化的过程内观察。使用允许精确的μs快门时间的精确时钟高速相机系统记录过程,进行视觉观察并将其用作详细下游数据分析的输入。实验研究结合了PECM中使用最广泛的冲洗条件之一,并展望了所记录的过程中数据的比较以及基于所监测形状的静态FEM仿真。在所有实验中,AISI 304(X5CrNi18-10)型不锈钢均用作阳极和阴极材料,对于所有PECM实验,均使用市售的PEMCenter8000,其中硝酸钠为电解质。提出的概念将通过在实验过程中同时提供过程相关的电化学数据以及直接对应的几何形状信息,来帮助更好地将实验与PECM过程的建模联系起来。

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