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首页> 外文期刊>Journal of Materials Engineering and Performance >Investigation into Microstructures of Maraging Steel 250 Weldments and Effect of Post-Weld Heat Treatments
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Investigation into Microstructures of Maraging Steel 250 Weldments and Effect of Post-Weld Heat Treatments

机译:马氏体时效钢250焊缝的显微组织研究和焊后热处理的影响

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摘要

This study was undertaken to gain a better understanding of microstructures obtained by multipass gas tungsten arc welding in maraging steel grade 250. Metallography and microhardness measurements were carried out on sheet and welded joints in as-welded and post-weld aged conditions. It was found that there was a significant amount of reverted austenite formed on cell boundaries of weld metal after aging at 758-823 K for 3-5 h, and was stable at room temperature. Aging at higher temperatures led to an increase in the continuous network of patchy austenite along the cell boundaries. The reason for the above, in our opinion, is the concentrational heterogeneity which characterizes the microstructure of maraging steel welds. No reverted austenite was observed in as-welded specimens. Solution annealing at 1093 K for 1 h did not completely eliminate the chemical heterogeneity associated with weld structures. However, homogenizing at 1373 K produced homogenous structure that on subsequent aging produces austenite-free lath martensitic structure.
机译:进行这项研究的目的是为了更好地理解在250级马氏体时效钢中通过多道气体钨极电弧焊获得的显微组织。在焊接和焊后时效条件下,对薄板和焊接接头进行了金相和显微硬度测量。发现在758-823 K时效3-5 h时效后,在焊缝金属的晶界上形成了大量的奥氏体,并且在室温下是稳定的。高温下的老化导致沿细胞边界的片状奥氏体连续网络增加。在我们看来,上述原因是由于马氏体时效钢焊缝的微观结构具有集中性。焊接后的样品中未观察到奥氏体还原。在1093 K下固溶退火1 h不能完全消除与焊接结构相关的化学异质性。但是,在1373 K处均质会产生均匀的结构,该结构在随后的时效过程中会产生不含奥氏体的板条马氏体结构。

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