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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Analysis of the effect of an electrically conductive die on electromagnetic sheet metal forming process using the finite element-circuit coupled method
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Analysis of the effect of an electrically conductive die on electromagnetic sheet metal forming process using the finite element-circuit coupled method

机译:用有限元电路耦合方法分析导电模具对电磁金属板形成过程的影响

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摘要

Accurate calculation of electromagnetic parameters in electromagnetic forming (EMF) process is crucial for predicting the deformation behavior of metallic workpieces. Previous theoretical and numerical studies for EMF process with a die have assumed that the die near the workpiece is non-conductive. However, the simplified treatment could be invalid for the cases with a conductive die since an eddy current would also be induced in the die under transient magnetic fields, thus resulting in the change of electromagnetic force acting on the workpiece. In this work, a coupled finite element method and circuit simulation approach with an improved circuit model for analyzing the workpiece deformation is presented, in which the mechanical analysis of the workpiece is done using ANSYS, while the circuit analysis is performed using an improved current filament model. Numerical simulations have been carried out for two types of EMF process, revealing the potential effects of an electrically conductive die on the electromagnetic force distribution and workpeice deformation. The coupled modeling method and simulation results could be useful for better understanding EMF process and designing EMF systems.
机译:电磁成形(EMF)工艺中电磁参数的精确计算对于预测金属工件的变形行为至关重要。用模具的EMF过程的先前理论和数值研究已经假设工件附近的管芯是非导电的。然而,由于涡流在瞬态磁场下也将在管芯中引起涡电流,因此简化的治疗可能是无效的,因为涡流也将在瞬态磁场下被诱导,从而导致作用在工件上的电磁力的变化。在这项工作中,提出了一种耦合有限元方法和具有用于分析工件变形的改进电路模型的电路模拟方法,其中使用ANSYS进行工件的机械分析,而使用改进的电流灯丝进行电路分析模型。已经为两种类型的EMF过程进行了数值模拟,揭示了导电模具对电磁力分布和Workpeeice变形的潜在影响。耦合建模方法和仿真结果对于更好地了解EMF过程和设计EMF系统有用。

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