A Literature Review on Modeling and Simulation of Crater Dimension in Electrical Discharge Machining

Nishant Mishra, Atul Chakrawarti
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Abstract

A comprehensive model of electrical discharge machining has been used for simulating the crater size during the process for materials Aluminum, Brass and die steel D2. It is very difficult by theoretically to analysis temperature distribution in whole work -piece because of its complexity process and a single discharge is occurs very short time. A novel model proposed with realistic condition such as plasma radius, Gaussian heat flux and temperature dependent properties and this model use software ABAQUS 6.2. In this work piece crater diameter and depth is predicted on the basis of simulation. FEM model show the variation of crater size (temperature distribution) with variation in input parameter. In model, increasing discharge energy causes crater size increase means MRR and surface roughness increases. In this model, simulation show better result with experimental result and error is taken under consideration like 13 to 20% which is better result in present research scenario.
电火花加工中弹坑尺寸建模与仿真的文献综述
采用综合电火花加工模型,对铝、黄铜和模具钢D2等材料电火花加工过程中的弹坑尺寸进行了模拟。由于过程复杂,单次放电时间短,从理论上分析整个工件的温度分布是很困难的。利用ABAQUS 6.2软件,结合等离子体半径、高斯热流密度和温度相关特性等现实条件,建立了一个新的模型。在仿真的基础上对该工件的弹坑直径和深度进行了预测。有限元模型显示了弹坑尺寸(温度分布)随输入参数的变化。在模型中,放电能量的增加导致弹坑尺寸的增大,意味着MRR和表面粗糙度的增大。在该模型中,仿真结果与实验结果吻合较好,并且考虑了13% ~ 20%的误差,是目前研究场景下较好的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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