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首页> 外文期刊>Welding in the World: Journal of the International Institute of Welding: Journal of the International Institute of Welding >Microstructures and their distribution within HAZ of X80 pipeline steel welded using hybrid laser-MIG welding
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Microstructures and their distribution within HAZ of X80 pipeline steel welded using hybrid laser-MIG welding

机译:用杂交激光焊接焊接X80管道钢HAZ中的微观结构及其分布

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摘要

Large microstructure gradient in the heat-affected zone (HAZ) in the joints of large thick material welded by the hybrid laser-MIG welding technology reduces the in-service reliability and durability of the welded structure. It is of great importance to characterize and analyze how the microstructure distribution and evolution occur in the HAZ of the laser-MIG hybrid welded joints fabricated with X80 pipeline steel. In this article, the HAZ is found to comprise these characteristic zones, namely banded microstructure HAZ (BMHAZ), fine-grained HAZ (FGHAZ), transitional microstructure HAZ (TMHAZ), and coarse-grained HAZ (CGHAZ). The zone of the HAZ contains quasi-polygonal ferrite (QF), M-A component, polygonal ferrite (PF), and bainite ferrite (BF). From the base metal side towards the weld center with the decrease in the distance, the size of the M-A components decreases and its distribution is more dispersed, while the content of QF decreases in the HAZ. The average diameter of the original austenite grain increases gradually and so does the content of lath microstructures.
机译:通过混合激光焊接技术焊接的大型厚材料的接头中的热影响区域(HAZ)中的大型微观结构梯度降低了焊接结构的可靠性和耐用性。表征和分析如何在用X80管道钢制造的激光横发混合焊接接头的HAZ中出现微观结构分布和进化是非常重要的。在本文中,发现HAZ包括这些特征区域,即带状微观结构HAZ(BMHAZ),细粒度HAZ(FGGHAZ),过渡组织HAZ(TMHAZ)和粗粒度HAZ(CGHAZ)。 HAZ区域包含准多晶铁氧体(QF),M-A组分,多边形铁氧体(PF)和贝氏体铁氧体(BF)。从距离朝向焊接中心的基础金属侧随着距离的减小,M-A组分的尺寸降低,其分布更大,而QF的含量减小了HAZ中。原始奥氏体晶粒的平均直径逐渐增加,也增加了Lath微观结构的含量。

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