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首页> 外文期刊>International Journal of Electrical Machining >Electromagnetic effects of electrode materials and sizes on discharge current and wire vibration in Wire-EDM
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Electromagnetic effects of electrode materials and sizes on discharge current and wire vibration in Wire-EDM

机译:电极材料和尺寸的电磁效应对Wire-EDM中的放电电流和导线振动的影响

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摘要

This study aims to develop a simulation tool to analyze the influence of wire structure, workpiece material, and workpiece thickness on the discharge current and wire vibration caused by the electromagnetic force observed in wire electrical discharge machining (WEDM), taking into consideration the electromagnetic field around the electrodes. The distribution of current density and magnetic flux density, electromagnetic force acting on the wire, and wire vibration were analyzed by coupling the equation for the entire discharge circuit with the Poisson's equation of the magnetic vector potential around the wire. Monolithic brass wire showed higher discharge current than coated steel wire, resulting in larger electromagnetic force acting on the wire. A copper workpiece exhibits smaller but reversed phase wire vibration compared with steel workpiece. Thicker workpieces cause larger wire vibration because the electromagnetic force acts on the wire electrode along a greater distance.
机译:这项研究旨在开发一种仿真工具,以分析电火花线切割加工(WEDM)中观察到的电磁力,从而分析线结构,工件材料和工件厚度对放电电流和线振动的影响。电极周围。通过将整个放电电路的方程式与导线周围的磁矢量势的泊松方程耦合,可以分析电流密度和磁通量密度的分布,作用在导线上的电磁力以及导线振动。整体式黄铜线的放电电流高于涂层的钢丝,从而导致较大的电磁力作用在线上。与钢制工件相比,铜制工件表现出较小但反相的线振动。较厚的工件会引起较大的导线振动,因为电磁力会沿较大的距离作用在导线电极上。

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