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Numerical study on the splitting of a vapour bubble in the process of EDM

机译:电火花加工过程中汽泡破裂的数值研究

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Electrical discharge machining (EDM) is a powerful technique for machining of hard and brittle materials. In this process, because of electrical discharge, a vapour bubble is generated in the dielectric liquid between the tool and the workpiece. The growth and collapse phases of the vapour bubble have significant effect on the hydrodynamic behaviour of the dielectric liquid domain between the tool and the workpiece and cause molten material to escape from the crater. Previous numerical studies on the dynamics of an electrical discharge-generated vapour bubble have simulated the growth and collapse of the bubble until it has taken the shape of an hour-glass. This is necking phenomenon which is followed by splitting of the bubble into two parts. In this paper dynamics of an electrical discharge-generated vapour bubble between the tool and the workpiece after its splitting are investigated by using the boundary integral equation method. Development of a liquid jet on the boundary of the each of the upper and lower parts of the bubble and the impingement of the liquid jets on the nearby rigid surfaces are sought. This paper consists of two parts. In part one, the vapour bubble is initially located between the tool and the workpiece. Consequently the dynamic behaviour of the two parts of the bubble in the absence of the buoyancy forces are symmetric with respect to a horizontal axis through the mid-point between the tool and the workpiece. In part two, the elrecrical discharge-generated vapour bubble is initially located in the vicinity of the workpiece. Therefore during the necking phenomenon the upper part of the bubble is smaller than its lower part. Consequently the dynamic behaviour of the two parts of the bubble after its splitting are significantly different.
机译:放电加工(EDM)是一种用于加工坚硬和脆性材料的强大技术。在该过程中,由于放电,在工具和工件之间的介电液体中产生蒸汽泡。汽泡的生长和破裂阶段对工具和工件之间的介电液域的流体力学行为有重大影响,并导致熔融材料从弹坑中逸出。先前对放电产生的蒸汽泡动力学的数值研究已经模拟了气泡的生长和破裂,直到其呈沙漏形为止。这是颈缩现象,随后将气泡分成两部分。本文利用边界积分方程法研究了刀具与工件分裂后由放电产生的气泡的动力学。寻求在气泡的上部和下部的每一个的边界上的液体射流的发展以及液体射流在附近的刚性表面上的撞击。本文由两部分组成。在第一部分中,气泡首先位于工具和工件之间。因此,在没有浮力的情况下,气泡的两个部分的动态行为相对于穿过工具和工件之间的中点的水平轴对称。在第二部分中,由放电产生的蒸汽气泡最初位于工件附近。因此,在颈缩现象期间,气泡的上部小于其下部。因此,气泡分裂后两部分的动态行为有很大不同。

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