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The effects of powder suspended dielectrics on the thermal influenced zone by electrodischarge machining with small discharge energies

机译:粉末悬浮电介质通过小放电能量的电火花加工对热影响区的影响

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摘要

EDM is used to machine every electrically conductive material by removing material through electrical discharges in a dielectric fluid. During machining the heat intensity from the spark melts a part of the workpiece. This liquid phase of the material resolidifies rapidly and builds the recast layer. A lot of work has been done before to explain the physical principles governing the process and the thermal influenced zone. Effects on the recast layer by using microJoule-range discharge energies in combination with powder suspended working fluids are examined in this paper. The effects of a capacitor connected parallel to the gap were investigated in relation to the recast layer formation. In addition, transverse section pictures show the morphology and the depth of the thermal influenced zone. The aim was to investigate the influence of the powder particles in micro-sinking-EDM and especially in the gap, on the thermal spread in the dielectric and on the influenced zone. Pictures were taken during the spark generation in different suspended dielectrics with a high speed framing camera. Furthermore, a complete qualitative and quantitative analysis of an EDX spectrum has been performed in order to examine the changes of the recast layer composition by using powder suspended dielectrics at the workpiece surface.
机译:EDM用于通过介电液中的放电去除材料来加工每种导电材料。在加工过程中,火花产生的热量会熔化一部分工件。材料的这种液相迅速固化并建立了重铸层。在解释控制过程和热影响区的物理原理之前,已经做了很多工作。本文研究了利用微焦耳范围的放电能量结合粉末悬浮工作流体对重铸层的影响。对于重铸层的形成,研究了与间隙平行连接的电容器的影响。此外,横截面图片显示了热影响区的形态和深度。目的是研究微沉EDM中,尤其是间隙中的粉末颗粒对电介质中的热扩散以及受影响区域的影响。在火花产生过程中,使用高速取景相机在不同的悬浮电介质中拍摄了照片。此外,已经进行了EDX光谱的完整的定性和定量分析,以便通过在工件表面使用粉末悬浮的电介质来检查重铸层组成的变化。

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