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Particle Hydrodynamics of the Electrical Discharge Machining Process. Part 2: Die Sinking Process

机译:放电加工过程的粒子流体动力学。第2部分:下沉过程

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The objective of this work is to investigate the dynamics of the dielectric fluid in the die sinking electrical discharge machining (EDM) process. Different methods were developed to investigate the fluid dynamics of the dielectric and particles. Both computational fluid dynamics (CFD) and experimental tests were performed.The most important achievement of this project is the improvement of the evacuation of the waste particles within the gap workpiece-electrode. An exhaustive understanding of the processes was crucial to obtain a uniform particles distribution which leads to a more efficient discharging and particle evacuation. A CFD analysis was used to figure out the characteristics for the electrode, such as its shape and dimensions and its kinematic properties. In particular, different combinations of axis Jerk, acceleration, speed and movement of the electrode were studied in detail. Different dielectric liquids were also considered.The experimental tests on full scale and increased scale models were performed at the AgieCharmilles laboratory and at the CMEFE laboratory in Geneva, in order to validate the CFD results. A test rig was built to perform study at a scale of 50:1 has been built, and a particle image velocimetry (PIV) was developed in order to study the effect of the fluid flow. The analysis of the trajectories of the waste particles inside the dielectric was performed for several configurations. The effect of the gas bubbles generated during the process is also under investigation.
机译:这项工作的目的是研究冲模放电加工(EDM)过程中介电液的动力学。开发了不同的方法来研究电介质和颗粒的流体动力学。进行了计算流体动力学(CFD)和实验测试。该项目最重要的成就是改善了间隙工件电极内废料的排出。对过程的详尽了解对于获得均匀的颗粒分布至关重要,这将导致更有效的排放和颗粒疏散。使用CFD分析来确定电极的特性,例如其形状和尺寸以及运动学特性。特别是,详细研究了轴加速度,电极加速度,速度和运动的不同组合。还考虑了不同的介电液体。在AgieCharmilles实验室和日内瓦CMEFE实验室进行了全比例和增量比例模型的实验测试,以验证CFD结果。建立了一个试验台,以50:1的比例进行研究,并开发了颗粒图像测速仪(PIV)以研究流体流动的影响。针对几种配置对电介质内部的废料颗粒的轨迹进行了分析。在此过程中产生的气泡的影响也正在研究中。

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