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Deformation of thin graphite electrodes with high aspect ratio during sinking electrical discharge machining

机译:高纵横比下沉电气放电加工薄石墨电极的变形

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In sinking electrical discharge machining (SEDM) use of thin graphite electrodes with high aspect ratio sporadically results in geometrical errors. Mechanical and thermal loads introduced due to jump flushing movements and multiple discharges may exceed critical material properties of graphite. In this paper, deformation effects are modelled by a three step simulation strategy considering discharge distribution, heat evolution and fluid structure interactions (FSI). Mechanical and thermal properties of graphite are characterized with focus on dynamic mechanical thermal analysis (DMA) and implemented into the multiphysics simulation model. Finally, characteristic curves are derived based on simulations in order to avoid critical deformations. (C) 2017 Published by Elsevier Ltd on behalf of CIRP.
机译:在沉没的电气放电加工(SED)中,使用具有高纵横比的薄石墨电极偶尔导致几何误差。 由于跳跃运动和多种排出而引入的机械和热负荷可能超过石墨的关键材料特性。 在本文中,考虑放电分布,热演变和流体结构相互作用(FSI),通过三步模拟策略进行模拟效果。 石墨的机械和热性能具有重点在动态机械热分析(DMA)上,并实施到多体仿真模型中。 最后,基于模拟导出特征曲线,以避免临界变形。 (c)2017年由elsevier有限公司代表CIRP发布。

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