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A comparison of laser-metal inert gas hybrid welding and metal inert gas welding of high-nitrogen austenitic stainless steel

机译:高氮奥氏体不锈钢激光 - 金属惰性气体混合焊接与金属惰性气体焊接的比较

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High-nitrogen austenitic stainless steel (HNASS) has many excellent properties, such as high strength and toughness, high strain-hardening ability, strong corrosion resistance and low magnetization compared with the traditional widely used Ni-Cr austenitic stainless steel. The high nitrogen content in HNASS leads to the welded joint in the risk of many problems, such as nitrogen escape and loss, nitride precipitation, formation of pores and thermal cracks, resulting in the poor welding performance. The HNASS joints without obvious defects were obtained by metal inert gas (MIG) welding and laser-MIG hybrid welding, separately. The microstructures and properties of welded joints were compared. The nitrogen content in fusion zones of the two joints was tested by an oxygen, nitrogen and hydrogen analyzer. The tensile strength and the impact absorption energy of laser-MIG hybrid welded joint were about 27% and 20% higher than those of MIG welded joint, respectively. It could be attributed to the stronger solid solution strengthening effect resulted by the high nitrogen content of laser-MIG hybrid welded joint. The finer grains and the reduction of ferrite and precipitation phase in the microstructure of laser-MIG hybrid welded joint contributed to the improvement of toughness.
机译:高氮奥氏体不锈钢(HNASS)具有许多优异的性能,例如高强度和韧性,高应变 - 硬化能力,与传统的广泛使用的Ni-Cr奥氏体不锈钢相比,强腐蚀性和低磁化。 HNAS中的高氮含量导致焊接接头存在许多问题的风险,例如氮气逸出和损失,氮化物沉淀,孔的形成和热裂缝,导致焊接性能差。通过金属惰性气体(MIG)焊接和激光 - 杂交焊接,可以通过金属惰性气体(MIG)焊接和激光 - 杂交焊接而没有明显缺陷的HNASS接头。比较焊接接头的微观结构和性质。通过氧,氮和氢气分析仪测试两个关节的融合区中的氮含量。拉伸强度和激光杂交焊接接头的冲击吸收能量分别比MIG焊接接头高约27%和20%。它可能归因于强的固溶强强化效果,通过激光 - MIG杂交焊接接头的高氮含量导致。激光 - MIG杂交焊接接头的微观结构中的更精细的晶粒和铁素体和沉淀相的降低有助于改善韧性。

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