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Influence of Plasma Channel Change on the Surface Topology in the Electrical Discharge Machining

机译:等离子体通道变化对电气放电加工表面拓扑的影响

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For the EDM, it is important that the surface topology can be determined for given process parameters in advance. Simulations with constant plasma channel radius are very inaccurate and only give a limit of thermally-influenced zone to. Many functional relationships of the temporal change of the plasma channel are only for small time periods and do not reflect properties of the dielectric. In the paper is shown how various properties of the dielectric contribute to the change of the plasma channel and the plasma channel as different behaviors can be treated with one simulation program. The maximum thermal load may be calculated by selective application of simulation, but also the topologies through moving or split plasma channels. This extended simulation is important because in the micro-EDM there are process instabilities leading to the splitting of the plasma channels. The simulations are reviewed on the basis of individual discharges and corrected corresponding weighting factors.
机译:对于EDM,重要的是,可以提前确定表面拓扑结构。具有恒定等离子体通道半径的模拟非常不准确,仅提供热影响区域的极限。等离子体通道的时间变化的许多功能关系仅用于小的时间段,并且不反映电介质的特性。本文示出了电介质的各种特性如何贡献等离子体通道的变化和等离子体通道,因为可以用一个仿真程序处理不同的行为。可以通过选择性应用模拟来计算最大热载荷,而是通过移动或分开等离子体通道的拓扑来计算。这种扩展模拟很重要,因为在微EDM中,有过程不稳定性导致等离子体通道的分裂。根据个体放电审查模拟,并纠正了相应的加权因子。

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