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Effect of cooling rate on microstructure and properties of microalloyed HSLA steel weld metals

机译:冷却速度对微合金HSLA钢焊缝金属组织和性能的影响

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摘要

Two high strength Nb/Ti microalloyed S690QL steels were welded with identical filler material, varying welding parameters to obtain three cooling rates: slow, medium and fast cooling. As cooling rate increased, the predominantly acicular ferrite in Nb weld metal (WM) is substituted by bainite, with a consequence of obvious hardness increase, but in Ti WM, no great variation of acicular ferrite at all cooling rates contributed to little increment of hardness. The transition between bainite and acicular ferrite has been analysed from the point view of inclusions characteristics, chemical composition and cooling rate. Excellent Charpy toughness at 233 K was obtained with acicular ferrite as predominantly microstructure. Even with bainite weld of high hardness, the toughness was nearly enough to fulfill the minimal requirements. WM for Ti steel showed to be markedly less sensitive to the variations of cooling rate than that for Nb steel.
机译:两种高强度Nb / Ti微合金化S690QL钢用相同的填充材料焊接,改变焊接参数以获得三种冷却速率:慢速,中速和快速冷却。随着冷却速度的增加,Nb焊缝金属(WM)中的主要针状铁素体被贝氏体替代,从而导致硬度明显增加,但在Ti WM中,在所有冷却速度下,针状铁素体的变化都不大,几乎没有增加硬度。从夹杂物特征,化学成分和冷却速率的角度分析了贝氏体和针状铁素体之间的过渡。针状铁素体主要是显微组织,在233 K下获得了出色的夏比韧性。即使采用高硬度的贝氏体焊缝,其韧性也足以满足最低要求。与Nb钢相比,Ti钢的WM对冷却速率的变化明显不那么敏感。

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