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Research on Fracture Behavior of High Nitrogen Austenitic Stainless Steels at Cryogenic Temperature

机译:高氮奥氏体不锈钢在低温下的断裂行为研究

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This paper investigates the ductile to brittle transition (DBT) behavior of 19.55Cr-19.5Mn-2.26Mo-0.96N,19.56Cr- 19.4Mn-2.29Mo-0.82N and 19.84Cr-18.9Mn-2.26Mo-0.88N steels from 77K to 290K by Charpy V-Notch (CVN)impact tests, and then reveals the possible fracture mechanism by SEM and TEM. With the concentration of nitrogen increasing, the ductility at low temperature decreases rapidly and the DBTT increases. The fracture modes are transgranular and intergranular fractures. Fracture facets along {111}γ and annealing twin boundary appear in the impact fractures at low temperature. River patterns which are the typical features of cleave fracture facets and tear ridges which are the typical feature of quasi-cleave fracture facets exist at cryogenic temperature. The change of fracture patterns of high nitrogen austenitic stainless steels is dimple→shallow dimple→mixture of quasi-cleavage facet and dimple→cleavage facet.
机译:本文研究了19.55Cr-19.5Mn-2.26Mo-0.96N,19.56Cr-19.4Mn-2.29Mo-0.82N和19.84Cr-18.9Mn-2.26Mo-0.88N钢的延性至脆性转变(DBT)行为通过夏比V型缺口(CVN)冲击试验,从77K到290K,然后通过SEM和TEM揭示了可能的断裂机理。随着氮浓度的增加,低温下的延展性迅速降低,DBTT增加。断裂模式为沿晶断裂和沿晶断裂。低温下的冲击断裂沿{111}γ断裂面和退火双晶界出现。在低温下存在着作为裂开断裂面的典型特征的河流型式和作为准裂开断裂面的典型特征的撕裂脊。高氮奥氏体不锈钢的断裂形态变化为酒窝→浅酒窝→准解理面与酒窝→解理面的混合物。

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