首页> 外文期刊>Journal of Materials Engineering and Performance >Role of Welding Parameters Using the Flux Cored Arc Welding Process of Low Alloy Steels on Bead Geometry and Mechanical Properties
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Role of Welding Parameters Using the Flux Cored Arc Welding Process of Low Alloy Steels on Bead Geometry and Mechanical Properties

机译:低合金钢药芯焊丝电弧焊接工艺中焊接参数对焊缝几何形状和力学性能的影响

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摘要

Welding parameters have direct effects on the bead geometry, microstructure, and mechanical properties of low alloy steels. A series of experiments have been carried out to examine some of these parameters using the flux cored arc welding process (FCAW). In this article, an experimental study was conducted to investigate the influence of welding parameters in FCAW process particularly welding voltage and travel speed on weld bead dimensions. The study also includes the effects of bead overlap and deposition sequence on the parent material and the heat-affected zone (HAZ) properties. It was found that an increase in the welding voltage leads to an increase in the weld bead width, and the increase in the welding traverse speed leads to a decrease in the weld bead width. When studying the bead overlap percentages, it was found that the 50% bead overlap can be considered to be practically a better option than the higher percentages of bead overlap (i.e., 70-90%). The experimental investigation of studying the deposition sequence showed that there were no significant differences in the microstructure, hardness, and the size of the refined HAZ between the two proposed deposition sequences. However, a significant improvement in the microstructure and the size of the refined HAZ, and a reduction in the hardness were achieved after depositing the second welding bead, irrespective of the depositing sequence.
机译:焊接参数直接影响低合金钢的焊道几何形状,微观结构和机械性能。已经进行了一系列实验,以使用药芯焊丝电弧焊工艺(FCAW)来检查其中一些参数。在本文中,进行了一项实验研究,以研究FCAW工艺中焊接参数的影响,特别是焊接电压和行进速度对焊道尺寸的影响。该研究还包括珠子重叠和沉积顺序对母体材料和热影响区(HAZ)性能的影响。已经发现,焊接电压的增加导致焊缝宽度的增加,而焊接移动速度的增加导致焊缝宽度的减小。在研究胎圈重叠百分比时,发现与50%的胎圈重叠百分比(即70-90%)相比,可以认为50%的胎圈重叠实际上是一个更好的选择。对沉积顺序进行研究的实验研究表明,在两个拟议的沉积顺序之间,微观结构,硬度和精制热影响区的大小没有显着差异。但是,在沉积第二焊道后,无论沉积顺序如何,都可以显着改善精制热影响区的组织和尺寸,并降低硬度。

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