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An investigation on surface integrity in EDM process with a copper tungsten electrode

机译:用铜钨电极对EDM过程表面完整性的研究

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One of the most important non- conventional machining methods is Electrical Discharge Machining (EDM). The present study performs the EDM process with copper-tungsten electrode of diameter 2 mm to establish the influence of the EDM parameters on various aspects of the surface integrity of AISI 4340 steel. The residual stress induced by the EDM process is measured using the X-rays diffraction method. The experimental results reveal that the values of material removal rate (MRR), surface roughness (SR), and induced residual stress tend to increase at higher values of pulse current and pulse-on duration. However, for extended pulse-on duration, it is noted that the MRR, SR, and surface crack density all decrease. A smaller pulse current (i.e. 1A) tends to increase the surface crack density, while a prolonged pulse-on duration (i.e. 30us) widens the opening degree of the surface crack, thereby reducing the surface crack density. It is determined that the residual stress can be controlled effectively by specifying an appropriate pulse-on duration.
机译:最重要的非常规加工方法之一是电气放电加工(EDM)。本研究通过直径2mm的铜 - 钨电极进行EDM过程,以建立EDM参数对AISI 4340钢的表面完整性的各个方面的影响。使用X射线衍射法测量由EDM工艺引起的残余应力。实验结果表明,材料去除率(MRR),表面粗糙度(SR)的值和诱导的残余应力趋于在脉冲电流和脉冲持续时间的较高值下升高。然而,对于延长脉冲持续时间,应注意,MRR,SR和表面裂纹密度均降低。较小的脉冲电流(即1A)倾向于增加表面裂纹密度,而延长脉冲持续时间(即30US)扩大了表面裂纹的开度,从而降低了表面裂纹密度。确定通过指定适当的脉冲持续时间可以有效地控制残余应力。

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