根据DIN SPEC 91399确定工艺输入参数的去除装置中电解液流动的瞬态三维模拟

Nils Paucke , Alexander Thielecke , Richard Petermann , Gunnar Meichsner , Matthias Hackert-Oschätzchen
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引用次数: 0

摘要

脉冲电化学加工(PECM)是基于脉冲直流电的阳极金属溶解原理。为了保证阳极(工件)和阴极(工具)之间的电荷传递,导电介质电解液在两个电极之间的工作间隙中流动。PECM的去除效果主要受工作间隙电流密度分布和待加工材料的影响。由于这些原因,根据DIN SPEC 91399的去除实验对于确定工艺设计的工艺输入参数非常重要。在本研究中,显示了适合DIN SPEC 91399实验的PECM去除装置中电解质流动的瞬态三维模拟。分析了压差、工作距离等参数对流量和工作间隙内流速场的影响,加深了对确定过程的理解。对实验结果进行了讨论,得出了X90CrMoV18试样上的冲刷痕迹与模拟所得的流速场之间的相关性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transient 3D Simulation of electrolyte flow in a removal device for the determination of process input parameters according to DIN SPEC 91399
Pulsed Electrochemical Machining (PECM) is based on the principle of anodic metal dissolution with pulsed direct current. To ensure the charge transfer between the anode (workpiece) and the cathode (tool), an electrically conductive medium, the electrolyte, flows in the working gap between the two electrodes.
The removal results of PECM are essentially influenced by the current density distribution in the working gap and by the material to be processed. For these reasons, removal experiments according to DIN SPEC 91399 are important to determine process input parameters for the process design.
In this study, transient 3D simulations of electrolyte flow in a PECM removal device, which is suitable for experiments according to DIN SPEC 91399, are shown. The influence of the parameters pressure difference and working distance on the flow rate and the flow velocity field in the working gap are analysed to gain a deeper understanding of the determination process. Afterwards experimental results are discussed, which show a correlation between flushing marks on X90CrMoV18 samples and the flow velocity field from the simulations.
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