首页> 外文会议>Asia Pacific Conference on Optics Manufacture; 20070111-13; Hongkong(CN) >Improving Machining Accuracy of the EMM Process through Multi-physics Analysis
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Improving Machining Accuracy of the EMM Process through Multi-physics Analysis

机译:通过多物理场分析提高EMM工艺的加工精度

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In this study, the parametric effects of the EMM process were studied by both numerical simulation and experimental tests. The numerical simulation was performed using commercial software, FEMLAB, to establish a multi-physics model which consists of electrical field, convection and diffusion phenomena to simulate the parametric effects of pulse rate, pulse duty, electrode gap and inflow velocity. From the simulated results, the relationship between parameters and the distribution of metal removal could be established. Proper process variables were also chosen to conduct the EMM experiments. After the experiments, the profile of the processed rectangular slot was measured by a Keyence digital microscope. Comparing profile of the processed rectangular slot with the profile of the cathode, the machining accuracy of EMM process could be determined. It could also verify the goodness of the multi-physics model for predicting machining accuracy. From this study, the effects of parameters such as pulse rate, pulse duty, electrode gap and inflow velocity are better understood. The simulation model could be employed as a predictive tool to provide optimal parameters for better machining accuracy and process stability of the EMM process.
机译:在这项研究中,通过数值模拟和实验测试研究了EMM过程的参数效应。使用商业软件FEMLAB进行了数值模拟,以建立一个由电场,对流和扩散现象组成的多物理场模型,以模拟脉冲率,脉冲占空比,电极间隙和流入速度的参数效应。从模拟结果可以确定参数与金属去除分布之间的关系。还选择适当的过程变量来进行EMM实验。实验之后,通过Keyence数字显微镜测量处理后的矩形狭缝的轮廓。将加工后的矩形槽的轮廓与阴极的轮廓进行比较,可以确定EMM工艺的加工精度。它还可以验证用于预测加工精度的多物理场模型的优越性。通过这项研究,可以更好地了解诸如脉冲频率,脉冲占空比,电极间隙和流入速度等参数的影响。仿真模型可以用作预测工具,以提供最佳参数,以提高EMM工艺的加工精度和工艺稳定性。

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