CMT-MAG 和 MAG 焊接工艺对 C-Mn E410 结构钢微观结构和机械性能的影响

A. Khajuria, Anurag Misra, S. Shiva
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摘要

目的对不同含碳量的热轧 E410 钢,即 0.04wt.%C 和 0.17wt.%C 金属活性气体 (MAG) 和冷金属转移 (CMT) -MAG 焊接件的结构-性能相关性进行了实验研究。研究结果0.04wt.%C 钢具有块状和大位错密度的应变铁素体和雪明碳铁素体亚结构,而 0.17wt.%C 钢由波来石和多角形韧性铁素体组成。这影响了屈服强度(YS),0.04wt.%C 钢的显微硬度更高,0.17wt.%C 钢的伸长率更大。在 YS、极限拉伸强度 (UTS)、伸长率和韧性方面,CMT-MAG 所获得的两种 E410 钢焊接件的性能均优于 MAG。原创性/价值与 MAG 焊接相比,CMT-MAG 焊接可大幅提高 0.04wt.%C E410 钢的 YS(∼9%)、伸长率(∼38%)和室温冲击韧性(∼29%)。使用 CMT-MAG 时,0.17wt.%C E410 钢的 YS、伸长率和韧性几乎分别增加了 ∼10%、∼12.5% 和 ∼16%。CMT-MAG 的热输入相对较低,导致焊缝金属中出现细小的维德曼氏体和针状铁素体,HAZ 子区的微观结构细化,与母材金属的特性几乎相似。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The influence of CMT-MAG and MAG welding-processes on microstructure and mechanical behaviour of C-Mn E410 structural-steels
PurposeAn experimental investigation for developing structure-property correlations of hot-rolled E410 steels with different carbon contents, i.e. 0.04wt.%C and 0.17wt.%C metal active gas (MAG) and cold metal transfer (CMT)-MAG weldments was undertaken.Design/methodology/approachMechanical properties and microstructure of MAG and CMT-MAG weldments of two E410 steels with varying content of carbon were compared using standardized mechanical testing procedures, and conventional microscopy.Findings0.04wt.%C steel had strained ferritic and cementite sub-structures in blocky shape and large dislocation density, while 0.17wt.%C steel consisted of pearlite and polygonal ductile ferrite. This effected yield strength (YS), and microhardness being larger in 0.04wt.%C steel, %elongation being larger in 0.17wt.%C steel. Weldments of both E410 steels obtained with CMT-MAG performed better than MAG in terms of YS, ultimate tensile strength (UTS), %elongation, and toughness. It was due to low heat input of CMT-MAG that resulted in refinement of weld metal, and subzones of heat affected zone (HAZ).Originality/valueA substantial improvement in YS (∼9%), %elongation (∼38%), and room temperature impact toughness (∼29%) of 0.04wt.%C E410 steel is achieved with CMT-MAG over MAG welding. Almost ∼10, ∼12.5, and ∼16% increment in YS, %elongation, and toughness of 0.17wt.%C E410 steel is observed with CMT-MAG. Relatively low heat input of CMT-MAG leads to development of fine Widmanstätten and acicular ferrite in weld metal and microstructural refinement in HAZ subzones with nearly similar characteristics of base metal.
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