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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Influence of electrode temperature on electric erosion pit morphology during cool electrode EDM
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Influence of electrode temperature on electric erosion pit morphology during cool electrode EDM

机译:电极温度对冷电极EDM电腐蚀坑形态的影响

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摘要

The mechanism of material removal through cool electrode electrical discharge machining (EDM) was investigated in this study by using single pulse discharge method. The influence of electrode temperature on the electric erosion pit morphology on the surface of the electrode and workpiece was analyzed. Finite element simulation was conducted on the temperature field between the electrode and workpiece under different electrode temperatures, and the simulation results were verified through a single pulse experiment. Under the same single pulse discharge parameters, when the electrode temperature was -20, 20, and 60 degrees C, the electric erosion pit diameter on the electrode surface increased to 290, 350, and 403 mu m, respectively; the change in electric erosion pit diameter on the workpiece surface was small, and the corresponding values were 690, 705, and 718 mu m. However, the bulge of the electric erosion pit on the surface of the workpiece became increasingly obvious, and the surface became unsmooth. The results of the single pulse experiment and the finite element simulation were identical. A comparative experiment involving the machining of Ti-6Al-4V titanium alloy was conducted with cool electrode and conventional EDM. Electrode wear, surface roughness, and machining efficiency were analyzed. Compared with that in conventional EDM, electrode wear decreased by 24.5%, the material removal rate increased by 14.16%, and surface roughness decreased by 14.14% in cool electrode EDM. Reducing the electrode temperature changed the electric erosion pit morphology on the electrode and workpiece surface, reduced electrode wear, improved surface processing quality, and increased processing efficiency.
机译:通过使用单脉冲放电方法在该研究中研究了通过冷电极放电加工(EDM)的材料去除机理。分析了电极温度对电极和工件表面电腐蚀形态的影响。在不同电极温度下电极和工件之间的温度场上进行有限元模拟,通过单脉冲实验验证了模拟结果。在相同的单脉冲放电参数下,当电极温度为-20,20,20℃时,电极表面上的电腐蚀坑直径分别增加到290,350和403μm;工件表面上电腐蚀坑直径的变化很小,相应的值为690,705和718μm。然而,工件表面上的电腐蚀坑的膨胀变得越来越明显,并且表面变得不稳定。单脉冲实验的结果和有限元模拟相同。涉及加工Ti-6Al-4V钛合金的比较实验用冷电极和常规EDM进行。分析了电极磨损,表面粗糙度和加工效率。与常规EDM中的相比,电极磨损降低24.5%,材料去除率增加14.16%,表面粗糙度在冷电极EDM中降低14.14%。减小电极温度改变电极和工件表面上的电腐蚀坑形态,降低电极磨损,改善的表面处理质量,并提高了加工效率。

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