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回火工艺对超级马氏体不锈钢熔敷金属组织和性能的影响

Effect of tempering treatment on the microstructure and properties of supermartensitic stainless steel deposited metal

  • 摘要: 大型冲击式水轮机转轮的焊接是国内亟需解决的重大工程问题,对配套超级马氏体不锈钢焊材的冲击性能提出了更高的要求,焊后热处理工艺的优化是解决这一难题的重要手段,为此研究了不同回火工艺对超级马氏体不锈钢熔敷金属组织和力学性能的影响.对熔敷金属的化学成分、显微组织以及拉伸、冲击和硬度进行了测试和表征.结果表明,熔敷金属的回火组织由细小的回火马氏体和逆变奥氏体组成.相比590 ℃ × 8 h一次回火,二次回火能提高逆变奥氏体的含量,并且逆变奥氏体的含量随着二次回火温度的升高而进一步增加,软韧相逆变奥氏体的增多改善了熔敷金属的冲击性能.650 ℃ × 2 h + 590 ℃ × 8 h二次回火后可以获得16%体积分数的逆变奥氏体,熔敷金属的0 ℃冲击吸收能量达到90 J,比一次回火提高了约23%,相应的冲击断裂特征由韧性 + 部分脆性断裂转变为完全的韧性断裂.

     

    Abstract: The welding of large-scale pelton turbine runner is a significant engineering challenge that needs urgent resolution in China. This presents elevated demands for the impact performance of supermartensitic stainless steel welding materials. The optimization of post-weld heat treatment process is a crucial method to address this issue. For this purpose, the effect of various tempering treatment on the microstructure and mechanical properties of supermartensitic stainless steel deposited metal is investigated. The chemical composition, microstructure, tensile, impact and hardness of the deposited metal are tested and characterized. The results show that the tempering microstructure of the deposited metal consists of fine tempered martensite and reversed austenite. Compared with the one-stage tempering at 590 ℃ for 8 hours, the two-stage tempering can increase the content of the reversed austenite. The content of the reversed austenite further increases with the increase of the two-stage tempering temperature. The increase of the soft and ductile reversed austenite improves the impact performance of the deposited metal. After the two-stage tempering at 650 ℃ for 2 hours followed by 590 ℃ for 8 hours, a 16% volume fraction of reversed austenite can be obtained. The impact absorption energy of the deposited metal at 0 ℃ reaches 90 J, which is about 23% higher than the one-stage tempering. The corresponding impact fracture characteristics change from ductile + partial brittle fracture to complete ductile fracture.

     

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