首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Magnetic flux distribution modelling of magnetically-impelled arc butt-welding of steel tubes using finite-element analysis
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Magnetic flux distribution modelling of magnetically-impelled arc butt-welding of steel tubes using finite-element analysis

机译:钢管拼弧对接焊缝的磁通分布有限元分析

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摘要

Magnetically-impelled arc butt-welding (MIAB) is a pressure-welding process. In this process, heat is generated prior to forging by an arc created between two clamped and aligned tubes. This arc rapidly rotates along the peripheral edges of the tubes to be welded due to the electromagnetic force resulting from the interaction of the arc current and the magnetic field in the gap. To be precise, the magnetic flux density is the significant parameter that governs the arc rotation and the weld quality. This paper presents a three-dimensional finite-element model to determine the magnetic flux density distribution in the MIAB welding process. The objective of this study is to perform a non-linear electromagnetic analysis using the finite-element package ANSYS, and to explore the interdependence of MIAB welding parameters such as gap size, exciting current in the coil, and coil position from the weld centre, which influence the electromagnetic force generated in the welding process and weld quality. The results of this analysis are verified with the available experimental data for steel tubes (outer diameter 50 mm and thickness 2 mm). The results obtained using finite-element analysis establish that the magnetic flux density distribution in the gap increases with increasing exciting current and decreasing gap size and coil position from the weld centre. [PUBLICATION ABSTRACT]
机译:磁拼电弧对接焊(MIAB)是一种压力焊接工艺。在此过程中,在锻造之前,在两个夹紧并对齐的管之间产生的电弧会产生热量。由于电弧电流和间隙中磁场的相互作用而产生的电磁力,该电弧沿着待焊接管的外围边缘快速旋转。准确地说,磁通密度是控制电弧旋转和焊接质量的重要参数。本文提出了三维有限元模型来确定MIAB焊接过程中的磁通密度分布。这项研究的目的是使用有限元软件包ANSYS进行非线性电磁分析,并探索MIAB焊接参数的相互依赖性,例如间隙大小,线圈中的励磁电流以及距焊接中心的线圈位置,这会影响焊接过程中产生的电磁力和焊接质量。分析的结果已通过钢管(外径50 mm,厚度2 mm)的可用实验数据验证。使用有限元分析获得的结果表明,缝隙中的磁通密度分布随着励磁电流的增加和缝隙尺寸的减小以及距焊接中心的线圈位置的减小而增加。 [出版物摘要]

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