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Effect of Electrode Route Motion on Electrode Wear in EDM Machining of Mold Steel

机译:模具钢电火花加工中电极路径运动对电极磨损的影响

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摘要

In the electrical discharge machining (EDM) of deep holes, electrode wear may cause the dimensions of the finished holes to deviate from their design values. In practice, the extent of the electrode wear and the surface roughness of the machined holes depend not only on the EDM machining parameters (e.g., the pulse duration, the pulse current, and so on), but also on the electrode route motion. Accordingly, the present study performs an experimental investigation into the effects of three different electrode routes (straight dip, spiral attack hole, and awl free expand hole) on the electrode wear and surface roughness of the machined holes in the EDM machining of PDS5A and PDS-1 mold steel, respectively. Overall, the experimental results show that of the three electrode route motions, the awl free expand hole motion results in a more uniform wear of the electrode and a lower surface roughness of the machined hole.
机译:在深孔的放电加工(EDM)中,电极磨损可能导致精加工孔的尺寸偏离其设计值。在实践中,电极的磨损程度和加工孔的表面粗糙度不仅取决于EDM加工参数(例如,脉冲持续时间,脉冲电流等),还取决于电极路线的运动。因此,本研究对PDS5A和PDS的EDM加工中三种不同的电极路线(直浸,螺旋攻孔和锥锥自由扩展孔)对电极磨损和加工孔的表面粗糙度的影响进行了实验研究。 -1型钢。总体而言,实验结果表明,在三个电极路径运动中,锥锥自由扩张孔运动导致电极磨损更均匀,加工孔的表面粗糙度更低。

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