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Study of high toughness ferrite wire for submerged arc welding of pipeline steel

机译:管道钢埋弧焊用高韧性铁氧体焊丝的研究

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摘要

With the development of steel plate and the need of high toughness pipeline, it is necessary to develop wire and flux for high efficiency submerged arc welding to produce weld metal, which can match the properties of the base metal. The weld metal is designed to mainly consist of acicular ferrite. The variations of elements between wire and weld metal, and the effects of Mo, B and Ti an the microstructures and mechanical properties an discussed. Fine and uniformly distributed inclusion particles in the weld metal can promote the formation a acicular ferrite. TiN particles can pin the prior austenite grain boundaries of the heat-affected zone (HAZ) and inhibit the growth of austenite grains. B segregates in the boundaries of prior austenite grains and suppresses the growth of proeutectoid ferrite. The toughness of weld metal is high and stable. The hardness of the weld metal is between Hv 185 and 214, which is in the same level of the hardness of base metal, Hv 190. The welded joint has higher strength than that of the base metal, goad ductility, and a law ratio of #sigma#_0.5/#sigma#_b.
机译:随着钢板的发展以及对高韧性管道的需求,有必要开发用于高效埋弧焊以生产与母材性能相匹配的焊丝和焊剂。焊缝金属主要由针状铁素体组成。讨论了焊丝和焊缝金属之间元素的变化,以及Mo,B和Ti的影响以及显微组织和力学性能。焊缝金属中细小且均匀分布的夹杂物颗粒可促进形成针状铁素体。 TiN颗粒可以钉扎热影响区(HAZ)的先前奥氏体晶界,并抑制奥氏体晶粒的生长。 B在原始奥氏体晶粒的边界处偏析,并抑制了共析铁素体的生长。焊缝金属的韧性高且稳定。焊接金属的硬度在Hv 185和214之间,与贱金属的硬度Hv 190处于同一水平。焊接接头的强度高于贱金属,焊缝的延展性和定律比为#sigma#_0.5 /#sigma#_b。

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