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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Sensitivity thermal analysis of electrical discharge machining process based on probabilistic design system
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Sensitivity thermal analysis of electrical discharge machining process based on probabilistic design system

机译:基于概率设计系统的放电加工过程敏感性热分析

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摘要

The probabilistic design system is introduced for the sensitivity analysis to analyze the effects of machining parameters during electrical discharge machining process. An axisymmetric finite element thermal model is presented to investigate the electrical discharge machining process. By comparing the discharge crater geometry for the finite element method results and experiment results under different conditions, the deterministic thermal model is proved to be validated. Monte Carlo simulation method and response surface method are both used in the sensitivity analysis. Parameters of discharge voltage, peak current, pulse-on time and discharge channel radius are selected as the design variables. The sensitivity analysis results meet the confidence limit of 0.95. It is concluded that the discharge voltage and peak current have significant influences on the electrical discharge machining process, whereas the pulse-on time and discharge channel radius have little influence. Moreover, the increase in discharge channel radius can reduce the material removal rate. The increase in other parameters can increase the material removal rate.
机译:引入概率设计系统进行敏感性分析,以分析放电加工过程中加工参数的影响。提出了一个轴对称有限元热模型来研究放电加工过程。通过比较放电弹坑几何形状的有限元方法结果和不同条件下的实验结果,证明了确定性热模型的有效性。灵敏度分析中使用了蒙特卡罗模拟法和响应面法。选择放电电压,峰值电流,脉冲接通时间和放电通道半径的参数作为设计变量。灵敏度分析结果满足置信限度0.95。结论是,放电电压和峰值电流对放电加工过程有显着影响,而脉冲接通时间和放电通道半径影响不大。而且,排出通道半径的增加会降低材料去除率。其他参数的增加可以提高材料去除率。

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