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Simulation analysis of bubble motion under ultrasonic assisted Electrical Discharge Machining

机译:超声波辅助电气放电加工下泡沫运动的仿真分析

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In order to reveal the machining mechanism of the inter electrode gap during ultrasonic assisted electrical discharge machining, the relationship between the distribution of the flow field and bubble motion was studied. The three-dimensional model of deep hole machining was established firstly using the GAMBIT software. On the basis of theoretical analysis on the gap of the flow field working liquid, the bubble motion in the process of multiple pulse discharge was simulated using the FLUENT software. The motion of a single bubble and bubbles under with and without ultrasound was simulated respectively. Compared with the simulation results without considering ultrasound, it can be obtained that ultrasonic vibration is helpful for the generation of bubbles and improvement in the machining efficiency. It is provided a simulation basis for the actual analysis of electrical discharge machining process and the optimization of machining parameters.
机译:为了在超声波辅助放电加工期间揭示电极间隙的加工机构,研究了流场和气泡运动之间的关系。首先使用Gambit软件建立了深孔加工的三维模型。基于对流场工作液的间隙的理论分析,使用流畅的软件模拟多脉冲放电过程中的气泡运动。分别模拟单个气泡和泡沫的运动和不具有超声波的运动。与模拟结果相比,在不考虑超声波的情况下,可以获得超声波振动对于产生气泡和加工效率的提高有助于产生气泡和改进。为电气放电加工过程的实际分析和加工参数的优化提供了一种模拟基础。

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