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Process Control in Jet Electrochemical Machining of Stainless Steel through Inline Metrology of Current Density

机译:电流密度在线计量的不锈钢喷射电化学加工过程控制

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Jet electrochemical machining (Jet-ECM) is a flexible method for machining complex microstructures in high-strength and hard-to-machine materials. Contrary to mechanical machining, in Jet-ECM there is no mechanical contact between tool and workpiece. This enables Jet-ECM, like other electrochemical machining processes, to realize surface layers free of mechanical residual stresses, cracks, and thermal distortions. Besides, it causes no burrs and offers long tool life. This paper presents selected features of Jet-ECM, with special focus on the analysis of the current density during the machining of single grooves in stainless steel EN 1.4301. Especially, the development of the current density resulting from machining grooves intersecting previous machining steps was monitored in order to derive systematic influences. The resulting removal geometry is analyzed by measuring the depth and the roughness of the machined grooves. The correlation between the measured product features and the monitored current density is investigated. This correlation shows that grooves with the desired depth and surface roughness can be machined by controlling current density through the adjustment of process parameters. On the other hand, current density is sensitive to the changes of working gap. As a consequence of the changes of workpiece form and size for the grooves intersecting premachined grooves as well as the grooves with a lateral gap, working gap, and current density change. By analyzing monitoring data and removal geometry results, the suitability of current density inline monitoring to enable process control is shown, especially with regards to manufacture products that should comply with tight predefined specifications.
机译:喷射电化学加工(Jet-ECM)是一种灵活的方法,用于加工高强度且难加工的材料中的复杂微观结构。与机械加工相反,在Jet-ECM中,刀具和工件之间没有机械接触。像其他电化学加工工艺一样,这使Jet-ECM能够实现没有机械残余应力,裂纹和热变形的表面层。此外,它不会产生毛刺并且使用寿命长。本文介绍了Jet-ECM的精选功能,特别着重于对EN 1.4301不锈钢单槽加工过程中的电流密度进行分析。尤其是,监视由与先前的加工步骤相交的加工槽导致的电流密度的变化,以便得出系统的影响。通过测量加工槽的深度和粗糙度来分析最终的去除几何形状。研究了所测量的产品特征与所监视的电流密度之间的相关性。这种相关性表明,可以通过调节工艺参数来控制电流密度,从而加工出具有所需深度和表面粗糙度的凹槽。另一方面,电流密度对工作间隙的变化敏感。由于与预加工凹槽相交的凹槽以及具有横向间隙,工作间隙和电流密度变化的凹槽的工件形状和尺寸的变化,结果会发生变化。通过分析监控数据和去除几何结果,显示了电流密度在线监控对过程控制的适用性,特别是在制造应符合严格的预定义规格的产品方面。

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