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Induction Preheating for the Submerged Arc Welded Steel Tube Production

机译:浸没电弧焊管生产的诱导预热

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Tenaris is a leading supplier of tubes and related services for the world's energy industry that manufactures a complete range of seamless and welded steel tubular products. The welding facilities are located in North and South America, and perform three types of welding processes, namely Electric Resistance Welding (ERW), Spiral Submerged Arc Welding, and Longitudinal Submerged Arc Welding (LSAW). Regarding the ERW process, in recent years we studied both the welding using Comsol [1,2], and the ulterior seam heat treatment using an in-house developed FEM model [3,4]. During the LSAW process, after the plate is conformed through the UOE forming process, the butt joint of the pipe is welded in three phases, first of which aims at presenting the edges and joining them but without filling in the bevels, the second one is to fill in the seam region at the inside of the pipe and the third one to do this operation on the outside. The welds are made by melting with an electric arc the bare metal electrodes. Pressure is not applied on the pipe during welding. Depending on the final product properties sought, a preheating near the edges with a relatively narrow temperature range is required for these three welding stages. In this article we focus on the inductive preheating for the tack welding stage of a continuous production line! it involves an open tubular geometry whose edges are facing and separated approximately 10 mm. There is no need to reheat the full tube, but only a region of ±75 mm from the edges approximately. Given the geometry and the required localized preheating, usual solution would be bar type inductors as those used typically for seam annealing. Alternatively, cylindrical coils can be used instead of inductive bars. 2D and 3D numerical models of different inductor bars and cylindrical coils are used in order to assess both kinds of preheaters and to understand the advantages and disadvantages of each one.
机译:Tenaris是世界能源行业的管道和相关服务的领先供应商,生产完整的无缝和焊接钢管产品。焊接设施位于北美和南美洲,采用三种焊接工艺,即电阻焊接(ERW),螺旋浸没电弧焊接和纵向浸没电弧焊接(LSAW)。关于ERW过程,近年来我们研究了使用COMSOL [1,2]的焊接,以及使用内部开发的FEM模型的ULITIOR缝热处理[3,4]。在锯条过程中,在通过UOE形成过程符合板之后,将管道的对接接头分三相焊接,首先旨在呈现边缘并加入它们但不填充斜面,第二个阶段为了填充管道内部的缝区域,第三个在外部执行该操作。焊缝是通过用电弧熔化裸金属电极制成的。在焊接过程中不施加在管道上的压力。根据所寻求的最终产品特性,对于这三个焊接阶段需要具有相对较窄的温度范围的边缘附近的预热。在本文中,我们专注于连续生产线的粘性焊接阶段的电感预热!它涉及一个开放的管状几何形状,其边缘面向并分离约10mm。没有必要重新加热全管,但大约只有距离边缘±75毫米的区域。鉴于几何形状和所需的本地化预热,通常的解决方案将是栏式电感器,因为通常用于缝线退火的那些。或者,可以使用圆柱形线圈代替电感杆。使用不同电感器杆和圆柱形线圈的2D和3D数值模型,以评估两种预热器并理解每一个的优点和缺点。

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