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Microstructural Features and Ductile-Brittle Transition Behavior in Hot-Rolled Lean Duplex Stainless Steels

机译:热轧瘦双相不锈钢中的微观结构特征和韧性 - 脆性过渡行为

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The characteristics of texture and microstructure of lean duplex stainless steels with low Ni content produced through hot rolling followed by annealing were investigated locally with electron backscatter diffraction and globally with neutron diffraction. Then, the ductilebrittle transition (DBT) behavior was studied by Charpy impact test. It is found that the DBT temperature (DBTT) is strongly affected by the direction of crack propagation, depending on crystallographic texture and microstructural morphology; the DBTT becomes extremely low in the case of fracture accompanying delamination. A high Ni duplex stainless steel examined for comparison, shows a lower DBTT compared with the lean steel in the same crack propagating direction. The obtained results were also discussed through comparing with those of cast duplex stainless steels reported previously (Takahashi et al., Tetsu-to-Hagan, 100(2014), 1150).
机译:通过热轧产生的低Ni含量的瘦益于Ni含量的质地和微观结构的特征,然后用电子反向散射衍射和中子衍射全局局部研究退火。然后,通过夏比冲击试验研究了延展性转变(DBT)行为。发现DBT温度(DBTT)受裂纹传播方向的强烈影响,这取决于晶体纹理和微观结构形态;在伴随分层的裂缝的情况下,DBTT变得极低。检查高NI双相不锈钢以进行比较,与瘦钢相比,较低的DBTT在相同的裂缝传播方向上。还通过比较先前报道的铸造双相不锈钢钢(Takahashi等,Tetsu-to-Hagan,100(2014),1150)进行讨论得到的结果。

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