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Thermal Analysis and Microhardness Mapping in Hybrid Laser Welds in a Structural Steel

机译:结构钢混合激光焊缝的热分析和显微硬度映射

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摘要

Hybrid welding, the combination of laser and arc welding, is being heavily investigated for potential applications in the fabrication of structural steel components. The hybrid process is an alternative to autogenous laser welding that requires good fit-up of the parts. With the hybrid process, the addition of filler metal alters the weld pass chemistry and fills any gaps that may occur. In some applications, the fit-up of parts is only part of the issue for laser welding. In some structural steel components, the chemistry of the base metal when autogenously laser welded can result in weldments (weld metal and heat-affected zone (HAZ)) that have high hardness values. This indirectly indicates that the weld metal is brittle and not suitable for certain applications. The hardness values of the weldment have been used as an acceptance criteria for certain industrial applications. The use of hybrid welding may address the hardness issue. The addition of filler metal through a gas metal arc (GMAW) based hybrid process decrease the cooling rate in the HAZ therefore improving mechanical properties. These improvements can often be detected by microhardness profiles. While traditional hardness profiles tabulate hardness in a few regions of the weld, hardness mapping better profiles the hardness trends in the weldment. This paper will present welding results for the hybrid structural welding of a structural carbon steel using a 4 kW Nd: YAG based hybrid laser system. The data will center on the thermal response of the steel to the welding process, on the hardness mapping of the weldments and how the heat input altered the hardness and the mechanical properties of the welds.
机译:混合焊接是激光焊接和电弧焊接的结合,目前正在大量研究其在结构钢部件制造中的潜在应用。混合工艺是自生激光焊接的替代方法,自生激光焊接需要零件的良好装配。通过混合工艺,填充金属的添加会改变焊道化学成分并填补可能出现的缝隙。在某些应用中,零件的装配只是激光焊接的一部分。在某些结构钢部件中,当进行自发激光焊接时,贱金属的化学成分会导致焊件(焊接金属和热影响区(HAZ))具有较高的硬度值。这间接表明焊缝金属易碎,不适用于某些应用。焊件的硬度值已被用作某些工业应用的验收标准。使用混合焊接可以解决硬度问题。通过基于气体电弧(GMAW)的混合工艺添加填充金属会降低HAZ中的冷却速率,从而改善机械性能。这些改善通常可以通过显微硬度分布图来检测。传统的硬度曲线可以将焊缝中几个区域的硬度列表化,而硬度映射可以更好地曲线化焊件的硬度趋势。本文将介绍使用基于4 kW Nd:YAG的混合激光系统对结构碳钢进行混合结构焊接的焊接结果。数据将集中在钢对焊接过程的热响应,焊件的硬度图以及热量输入如何改变焊缝的硬度和机械性能的方面。

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