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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >Mathematical and numerical modeling of the effect of input-parameters on the flushing efficiency of plasma channel in EDM process
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Mathematical and numerical modeling of the effect of input-parameters on the flushing efficiency of plasma channel in EDM process

机译:EDM工艺中输入参数对等离子通道冲洗效率影响的数学和数值模型

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摘要

In the present study, the temperature distribution on the surface of workpiece and tool during a single discharge in the electrical discharge machining process has been simulated using ABAQUS code finite element software. The temperature dependency of material properties and the expanding of plasma channel radius with time have been employed in the simulation stage. The profile of temperature distribution has been utilized to calculate the dimensions of discharge crater. Based on the results of FEM and the experimental observations, a numerical analysis has been developed assessing the contribution of input-parameters on the efficiency of plasma channel in removing the molten material from molten puddles on the surfaces of workpiece and tool at the end of each discharge. The results show that the increase in the pulse current and pulse on-time have converse effects on the plasma flushing efficiency, as it increases by the prior one and decreases by the latter one. Later, the introduced formulas for plasma flushing efficiency based on regression model were utilized to predict the cardinal parameter of recast layer thickness on the electrodes which demands expensive empirical tests to be obtained.
机译:在本研究中,使用ABAQUS代码有限元软件模拟了放电加工过程中一次放电过程中工件和工具表面的温度分布。在仿真阶段已经采用了材料特性的温度依赖性以及等离子体通道半径随时间的扩展。温度分布曲线已用于计算放电坑的尺寸。根据有限元分析的结果和实验观察结果,进行了数值分析,评估了输入参数对等离子通道从工件和工具表面上的熔池中的熔融熔池中去除熔融物料的效率的影响。卸货。结果表明,脉冲电流和脉冲导通时间的增加对等离子体冲洗效率具有相反的影响,因为前者增加了后者,而后者减少了。后来,基于回归模型引入的等离子冲洗效率公式被用来预测电极上重铸层厚度的基本参数,这需要获得昂贵的经验测试。

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