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High-Speed Wire Electrical Discharge Machining of Insulating Zirconia with a Novel Assisting Electrode

机译:新型辅助电极在绝缘氧化锆高速线放电加工中的应用

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摘要

In this paper, a novel assisting electrode is proposed for high-speed wire electrical discharge machining (HS-WEDM) of insulating zirconia. The characteristics of this HS-WEDM process based on the novel assisting electrode are investigated, which include the study of the effects of pulse-on time on machining speed, surface roughness, and the status of electrical discharge during machining. The experimental results indicate that the machining speed increases from 1.54 to 1.68 mm~2/min when pulse-on time is changed from 10 to 20 μs and then decreases to 0.7mm~2/min with increasing pulse-on time, whereas surface roughness decreases from 7.5 to 6.1 μm when pulse-on time is increased from 10 to 20 us and then fluctuates slightly with increasing pulse-on time. X-ray diffraction analysis of the machined surface indicates that chemical reactions occur during the machining process. Finally, workpieces made of insulating zirconia are machined with the HS-WEDM process.
机译:本文提出了一种新型的辅助电极,用于绝缘氧化锆的高速电火花加工(HS-WEDM)。研究了基于新型辅助电极的HS-WEDM工艺的特性,包括研究脉冲接通时间对加工速度,表面粗糙度和加工过程中放电状态的影响。实验结果表明,当脉冲接通时间从10改变为20μs时,加工速度从1.54增至1.68 mm〜2 / min,然后随着脉冲接通时间的增加而降低至0.7mm〜2 / min,而表面粗糙度当脉冲接通时间从10 us增加到20 us时,电阻值将从7.5μm减小到6.1μm,然后随着脉冲接通时间的增加而轻微波动。机加工表面的X射线衍射分析表明,在机加工过程中会发生化学反应。最后,用HS-WEDM工艺加工由绝缘氧化锆制成的工件。

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