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Study of Mechanical Properties and Characterization of Pipe Steel Welded by Hybrid (Friction Stir Weld + Root Arc Weld) Approach

机译:杂交(摩擦搅拌焊+根弧焊)焊接管钢力学性能及表征研究

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摘要

Friction stir welding (FSW) has recently attracted attention as an alternative construction process for gas/oil transportation applications due to advantages compared to fusion welding techniques. A significant advantage is the ability of FSW to weld the entire or nearly the entire wall thickness in a single pass, while fusion welding requires multiple passes. However, when FSW is applied to a pipe or tube geometry, an internal back support anvil is required to resist the plunging forces exerted during FSW. Unfortunately, it may not be convenient or economical to use internal backing support due to limited access for some applications. To overcome this issue, ExxonMobil recently developed a new concept, combining root arc welding and FSW. That is, a root arc weld is made prior to FSW that supports the normal loads associated with FSW. In the present work, mechanical properties of a FSW + root arc welded pipe steel are reported including microstructure and microhardness.
机译:摩擦搅拌焊接(FSW)最近引起了由于与融合焊接技术相比的燃气/油运输应用的替代施工过程。显着的优点是FSW以在单次通过中焊接整个或几乎整个壁厚的能力,而熔焊焊接需要多次通过。然而,当FSW施加到管或管几何形状时,需要内部背部支撑砧座来抵抗在FSW期间施加的陷入困境。不幸的是,由于某些应用的有限访问,使用内部背衬支持可能是方便或经济的。为了克服这个问题,埃克森美孚最近开发了一种新的概念,结合了根弧焊和FSW。也就是说,在FSW之前进行了一种根电弧焊接,用于支持与FSW相关的正常负载。在本作工作中,报告了FSW +根弧焊管钢的机械性能,包括微观结构和微硬度。

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