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Formation of the Workpiece Shape and Surface Finish During Electrical Discharge Machining

机译:放电加工中工件形状和表面光洁度的形成

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Electrical discharge machining is a promising non-traditional machining process, which is quite well investigated in relation to the formation of the plasma channel and the formation of single erosional craters. However, the influence of geometrical and energetic heterogeneities of electrodes on the formation of the workpiece shape and surface finish is insufficiently investigated. In this work the analysis of the influence of geometric and energetic heterogeneities of the surfaces of the electrodes on the discharge and its location, the shape and size of the erosion craters is performed. Theoretical studies based on multidischarge numerical simulation of electrical discharge machining, which includes a cyclical execution of the following steps: 1) modeling of thermal processes for a single discharge; 2) modeling of the workpiece material removal and crater formation during the pause; 3) determining of the location of the subsequent discharge, are carried out. For the simulation of thermal processes the equation of transient heat conduction in a medium with variable physical-chemical properties was used. Thus the workpiece material removal was replaced by an anisotropic material with low heat capacity, which allowed to eliminate the necessity of changing the computational domain when this material was removed. The experimental investigation on the distribution of discharges over the workpiece surface at the initial stage of EDM was performed. The emergence of the phenomenon of “nesting” craters in the zones of maximum energy disposition (bulges, zones of differential surface and temperature) was shown. The process of how these zones are distributed over the entire workpiece surface was shown.
机译:放电加工是一种很有前途的非传统加工方法,关于等离子通道的形成和单个腐蚀坑的形成,已经进行了很好的研究。但是,还没有充分研究电极的几何和能量异质性对工件形状和表面光洁度形成的影响。在这项工作中,分析了电极表面的几何和能量异质性对放电及其位置,腐蚀坑的形状和大小的影响。基于放电加工的多放电数值模拟的理论研究,包括以下步骤的循环执行:1)单次放电的热过程建模; 2)暂停过程中工件材料去除和缩孔形成的模型; 3)确定后续放电的位置。为了模拟热过程,使用了具有可变物理化学性质的介质中的瞬态热传导方程。因此,工件材料的去除被具有低热容量的各向异性材料所替代,这消除了当去除该材料时改变计算域的必要性。在电火花加工初期对工件表面放电分布进行了实验研究。显示了在最大能量配置区域(凸起,表面差异和温度区域)出现“嵌套”陨石坑现象的出现。显示了这些区域如何在整个工件表面上分布的过程。

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