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Research on the influence of the discharge breakdown process on the crater formation during EDM

机译:放电击穿过程对EDM陨石坑形成的影响研究

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Purpose-This paper aims to study the breakdown, oscillation and vanishing of the discharge channel and its influence on crater formation with simulation and experimental methods. The experiment results verified the effect of the oscillating characteristics of the discharge channel on the shape of the crater. Design/methodology/approach-A mathematical model that considers the magnetohydrodynamics (MHD) and the discharge channel oscillation was established. The micro process of discharging based on magnetic-fluid coupling during electrical discharge machining (EDM) was simulated. The breakdown, oscillation and vanishing stage of the discharge channel were analyzed, and the crater after machining was obtained. Finally, a single-pulse discharge experiment during EDM was conducted to verify the simulation model. Findings-During the breakdown of the discharge channel, the electrons move towards the center of the discharge channel. The electrons at the end diverge due to the action of water resistance, making the discharge channel appear wide at both ends and narrow in the middle, showing the pinch effect. Due to the mutual attraction of electrons and positive ions in the channel, the transverse oscillation of the discharge channel is shown on the micro level. Therefore, the position of the discharge point on the workpiece changes. The longitudinal oscillation in the discharge channel causes the molten pool on the workpiece to be ejected due to the changing pressure. The experimental results show that the shape of the crater is similar to that in the simulation, which verifies the correctness of the simulation results and also proves that the crater generated by the single pulse discharge is essentially the result of the interaction between transverse wave and longitudinal wave. Originality/value -In this paper, the simulation of the discharge breakdown process in EDM was carried out, Based on the MHD module, the discharge breakdown, oscillation and vanishing stages were simulated, and the velocity field and pressure field in the discharge area were obtained.
机译:目的 - 本文旨在研究排放通道的击穿,振荡和消失,对模拟和实验方法的影响。实验结果验证了放电通道振荡特性对火山口形状的影响。设计/方法/方法 - 建立了磁性信息动力学(MHD)和放电通道振荡的数学模型。模拟了基于电放电加工(EDM)期间的磁流体耦合的微观排放方法。分析了放电通道的击穿,振荡和消失阶段,并获得了加工后的火山口。最后,进行了EDM期间的单脉冲放电实验以验证仿真模型。结果 - 在排出通道的击穿期间,电子向放电通道的中心移动。由于耐水性的作用,结束偏向的电子,使排放通道两端呈宽,中间窄,显示出夹紧效果。由于通道中的电子和正离子的相互吸引,放电通道的横向振荡显示在微观水平上。因此,排出点对工件的位置变化。放电通道中的纵向振荡导致由于压力变化而导致工件上的熔池。实验结果表明,火山口的形状类似于模拟中的形状,其验证了模拟结果的正确性,并证明了由单脉冲放电产生的火山口基本上是横波和纵向之间相互作用的结果海浪。原创性/值-in本文,基于MHD模块,模拟了EDM中的放电击穿过程的仿真,模拟了放电击穿,振荡和消失阶段,以及排放区域中的速度场和压力场获得。

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