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首页> 外文期刊>La Metallurgia Italiana >Investigation on the migration of material from tool to workpiece in micro-EDM drilling
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Investigation on the migration of material from tool to workpiece in micro-EDM drilling

机译:微细电火花加工中材料从工具向工件的迁移研究

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Electrical Discharge Machining (EDM) is a process used to remove material by means of t electrical discharges between the tool electrode and the workpiece. During the process, particles of the electrode migrates to the workpiece and vice versa, causing contamination. This can result in modifications of the physical and mechanical properties of the workpiece surface. Aim of this work is to study the migration of material from the tool to the workpiece during the execution of micro holes using micro-EDM. Micro holes were executed on stainless steel and titanium sheets; tubular electrodes made of brass and tungsten carbide were used while peak current and voltage were varied. The surfaces were analysed quantitatively using energy-dispersive x-ray (EDX) for detecting the surface composition. The migration of material was observed. Peak current and voltage resulted to affect in non–homogeneous way the morphology and the distribution of the elements on the hole surface.
机译:放电加工(EDM)是一种用于通过工具电极与工件之间的t次放电来去除材料的过程。在此过程中,电极的颗粒迁移到工件上,反之亦然,从而导致污染。这可能导致工件表面的物理和机械性能发生变化。这项工作的目的是研究在使用微型EDM的微孔加工过程中材料从工具向工件的迁移。在不锈钢和钛板上执行微孔;使用由黄铜和碳化钨制成的管状电极,同时改变峰值电流和电压。使用能量分散x射线(EDX)定量分析表面,以检测表面成分。观察到材料的迁移。峰值电流和电压导致以非均匀的方式影响孔表面元素的形态和分布。

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