Determination of the rate of electrochemical dissolution of U10A steel under ECM conditions with a stationary cathode-tool

Vasiliy Yanpolskiy, Maria Ivanova, Alexandra Nasonova, Alexander Yanyushkin
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Abstract

Introduction. In blank production, when replacing hard alloys with tool steels, difficulties arise in shaping surfaces to ensure the required parameters of productivity, quality and accuracy, due to the presence of incomplete information for assigning electrochemical processing modes for this class of materials. This fact requires additional research to determine rational processing modes that provide the necessary technological parameters (productivity, dimensional accuracy and surface roughness). The purpose of the work is to conduct research to establish the patterns of electrochemical shaping of tool steels and determine the modes of the shaping process. The work investigated the features of anodic dissolution of U10A tool steel in an aqueous NaCl solution of 10 % concentration. The range of potential changes was from 0 to 8 V. Technological performance parameters were determined (current output for the main reaction and the rate of electrochemical dissolution at a voltage of 8 V and an electrolyte pressure of 0.1 MPa). Research methods. For polarization studies, a potentiodynamic research method was chosen. Technological experiments were carried out using the model of piercing holes with a stationary cathode-tool made of stainless steel without insulation. A circular cross-section with outer diameters of 0.908 mm and inner diameters of 0.603 mm was chosen as a cathode tool. Results and discussions: it is revealed that the electrochemical dissolution of U10A tool steel in a 10 % aqueous solution of NaCl is active in the studied potential range from 0 to 8 V. The technological experiments carried out made it possible to establish the dimensions of the resulting holes — an average diameter of 1.433 mm and a depth of 0.574 mm. The current efficiency was 70.83 %. Based on the analysis of the experimental data obtained, it is established that in order to ensure high productivity of the process of electrochemical forming of U10A steel in a solution of 10 % NaCl, the feed of the cathode tool should be 0.2232 mm/min, which corresponds to the rate of electrochemical dissolution under the studied forming conditions.
利用固定阴极工具测定 U10A 钢在 ECM 条件下的电化学溶解速率
导言。在坯料生产中,当用工具钢替代硬质合金时,由于对这一类材料的电化学加工模式分配的信息不完整,在加工表面以确保所需的生产率、质量和精度参数方面出现了困难。这就需要进行更多的研究,以确定合理的加工模式,提供必要的技术参数(生产率、尺寸精度和表面粗糙度)。这项工作的目的是开展研究,建立工具钢的电化学成型模式,并确定成型工艺的模式。这项工作研究了 U10A 工具钢在浓度为 10% 的氯化钠水溶液中阳极溶解的特征。确定了技术性能参数(8 V 电压和 0.1 MPa 电解质压力下主要反应的电流输出和电化学溶解速率)。研究方法。极化研究选择了电位动力学研究方法。使用固定的无绝缘不锈钢阴极工具进行穿孔技术实验。阴极工具的截面为圆形,外径为 0.908 毫米,内径为 0.603 毫米。结果和讨论:研究表明,U10A 工具钢在 10 % 的氯化钠水溶液中的电化学溶解在 0 至 8 V 的电位范围内是有效的。电流效率为 70.83%。根据对所得实验数据的分析,可以确定,为了确保 U10A 钢在 10 % NaCl 溶液中电化学成型工艺的高生产率,阴极工具的进给量应为 0.2232 mm/min,这与所研究的成型条件下的电化学溶解速率一致。
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