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A mathematical model for surface roughness of fluidic channels produced by grinding aided electrochemical discharge machining (G-ECDM)

机译:采用研磨辅助电化学放电加工生产流体通道表面粗糙度的数学模型(G-ECDM)

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Grinding aided electrochemical discharge machining is a hybrid technique, which combines the grinding action of an abrasive tool and thermal effects of electrochemical discharges to remove material from the workpiece for producing complex contours. The present study focuses on developing fluidic channels on borosilicate glass using G-ECDM and attempts to develop a mathematical model for surface roughness of the machined channel. Preliminary experiments are conducted to study the effect of machining parameters on surface roughness. Voltage, duty factor, frequency and tool feed rate are identified as the significant factors for controlling surface roughness of the channels produced by G-ECDM. A mathematical model was developed for surface roughness by considering the grinding action and thermal effects of electrochemical discharges in material removal. Experiments are conducted to validate the model and the results obtained are in good agreement with that predicted by the model.
机译:研磨辅助电化学放电加工是一种混合技术,其结合了磨料工具的研磨作用和电化学排出的热效应,以从工件中除去材料以产生复杂轮廓。本研究侧重于使用G-ECDM在硼硅酸盐玻璃上开发流体通道,并试图开发机加工通道的表面粗糙度的数学模型。进行初步实验,研究加工参数对表面粗糙度的影响。电压,占子因子,频率和刀具进料速率被识别为控制由G-ECDM产生的通道的表面粗糙度的重要因素。通过考虑材料去除中的电化学放电的研磨作用和热效应,开发了一种用于表面粗糙度的数学模型。进行实验以验证模型,而获得的结果与模型预测的达成良好。

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