导电体电磁场传播与变形的计算分析方法

D. V. Lavinsky, Yu. I. Zaitsev
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引用次数: 0

摘要

介绍。电磁场是许多技术和工艺系统运行的一个整体属性。电磁场的作用导致变形,温度的变化,材料物理性质的变化。问题。高强度电磁场会使导电体产生强烈的变形,从而导致不可逆的形状变化或破坏。这一事实被用于一类技术操作:电磁成形。在这里,工件和设备都受到强烈的力作用。因此,设备元件可能无法操作。的目标。建立电磁场在导电体系统中传播的计算分析方法及随后的变形分析。将该方法应用于电磁成形系统的工艺研究,以确定合理的操作参数,从而提供工艺操作的结果。方法。本文采用了电磁场传播和导电体系统变形问题的变分公式。采用有限元法进行了数值模拟和分析。结果。在一般形式下,得到了求解矢量磁势和位移值的方程组。通过引入电磁力来考虑电磁场的影响。给出了弯曲薄壁件电磁成形工艺系统的计算结果。创意。本文首次提出了一种在同一设计方案框架内对电磁场传播过程和变形过程进行建模的计算分析方法。现实意义。提出的计算分析方法可用于各种电磁成形工艺系统,以确定合理的参数,既保证设备的可操作性,又保证工艺操作的目的-工件的必要成形。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Computational analysis method of the electromagnetic field propagation and deformation of conductive bodies
Introduction. The electromagnetic field is an integral attribute of the operation of many technical and technological systems. The action of an electromagnetic field leads to deformation, a change in temperature, a change in the physical properties of the materials. Problem. High-intensity electromagnetic fields can cause such a strong deformation of conductive bodies that it can lead to irreversible shape change or destruction. This fact is used in a class of technological operations: electromagnetic forming. Here, both the workpiece and the equipment are subjected to intense force action. As a result, equipment elements may become inoperable. Goal. Creation of a computational analysis method of the electromagnetic field propagation in systems of conductive bodies and subsequent analysis of deformation. Application of this method to the study of processes in electromagnetic forming systems in order to determine rational operational parameters that provide the result of a technological operation. Methodology. A variational formulation of the problems of an electromagnetic field propagation and deformation of conductive bodies systems is used. Numerical modeling and analysis are performed using the finite element method. Results. In a general form, a system of resolving equations for the values of the vector magnetic potential and displacements is obtained. The influence of the electromagnetic field is taken into account by introducing electromagnetic forces. The results of calculations for a technological system designed for electromagnetic forming of curved thin-walled workpieces are presented. Originality. For the first time, a method of computational analysis is presented, which involves modeling within the framework of one design scheme both the process of electromagnetic field propagation and the process of deformation. Practical significance. The proposed method of computational analysis can be used for various technological systems of electromagnetic forming in order to determine the rational parameters that ensure both the operability of the equipment and the purpose of the technological operation - the necessary shaping of the workpiece.
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