Computational studies of electromagnetic field propagation and deforming of structural elements for a thin-walled curved workpiece and an inductor

D. V. Lavinsky, Yu. I. Zaitsev
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Abstract

Introduction. At the present stage of industrial development, the electromagnetic field is widely used in various technological processes. The force effect of an electromagnetic field on conductive materials is used in a class of technological operations called electromagnetic forming. Problem. Under the conditions of electromagnetic forming, the main element of the technological equipment – the inductor – is simultaneously subjected to the force impact with the workpiece. At certain levels of the electromagnetic field, the deformation of the inductor becomes so significant that it can lead to a loss of its efficiency. Goal. Computational analysis of a thin-walled curved workpiece and a two-turn inductor under the conditions of electromagnetic processing of the workpiece corner zone. Determining the distribution of quantitative characteristics of the electromagnetic field and the stress-strain state and conducting assessments based on them regarding the efficiency of the technological operation. Methodology. Computational modeling using the finite element method as a method of numerical analysis. The results on the distribution of quantitative characteristics of the electromagnetic field and components of the stress-strain state for a thin-walled workpiece and an inductor are obtained. It is shown that for the specified characteristics of the technological operation, the inductor remains operational, and plastic deformations occur in the workpiece. A series of calculations were carried out, in which some parameters of the technological system were varied. Originality. For the first time, the results of the calculation analysis of the quantitative characteristics distribution of the electromagnetic field of the deformation process for the «inductor – thin-walled curved workpiece» system are presented. Practical value. The presented design scheme of a curved thin-walled workpiece and a two-turn inductor, the method of calculation analysis and some obtained results can be used in the analysis of electromagnetic processing of thin-walled structures that contain curved elements.
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薄壁曲面工件和感应器的电磁场传播和结构元素变形的计算研究
引言在工业发展的现阶段,电磁场被广泛应用于各种技术工艺中。电磁场对导电材料的力作用被用于一类称为电磁成形的技术操作中。问题在电磁成形条件下,技术设备的主要元件--感应器--与工件同时受到力的冲击。在一定的电磁场水平下,感应器的变形会变得非常明显,从而导致其效率降低。目标在工件角区电磁加工条件下,对薄壁曲面工件和两圈感应器进行计算分析。确定电磁场的定量特征分布和应力应变状态,并在此基础上对技术操作的效率进行评估。方法。使用有限元法作为数值分析方法进行计算建模。得出薄壁工件和感应器的电磁场定量特征分布和应力应变状态成分的结果。结果表明,在规定的技术操作特性下,感应器保持工作状态,工件发生塑性变形。通过改变技术系统的某些参数,进行了一系列计算。独创性。首次提出了 "感应器-薄壁曲面工件 "系统变形过程电磁场定量特征分布的计算分析结果。实用价值。所介绍的曲面薄壁工件和两圈感应器的设计方案、计算分析方法和部分所得结果可用于包含曲面元件的薄壁结构的电磁处理分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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