首页> 外文会议>Symposium on small specimen test techniques >Effect of Ta Rich Inclusions and Microstructure Change During Precracking on Bimodal Fracture of Reduced-Activation Ferritic/Martensitic Steels Observed in Transition Range
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Effect of Ta Rich Inclusions and Microstructure Change During Precracking on Bimodal Fracture of Reduced-Activation Ferritic/Martensitic Steels Observed in Transition Range

机译:预裂解过程中富钽夹杂物和微观组织变化对转变范围内还原活化铁素体/马氏体钢双峰断裂的影响

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The master curve method for analyzing fracture toughness data depends on the assumption that the fracture initiation points are homogeneously distributed and fracture initiation is independent of test temperature. The reduced-activation ferritic/martensitic steels, such as F82H (Fe-8Cr-2W-0.2V-0.04Ta), form Al_2O_3-Ta(V,Ti)O composite inclusions and its distribution is not homogeneous throughout one heat, and this microstructural inhomogeneityappears to be correlated with bimodal facture of F82H in the transition range. To investigate this possibility, 1TCT fracture toughness specimens of F82H-IEA steel were fatigue precracked and sliced through the specimen thickness for microstructure analysis around the crack. It was found that the crack penetration was straight in the beginning, and then tended to follow a prior austenite grain boundary and finally to branch into two or three different directions. In addition, the microstructures around thecrack and ahead of the crack formed a cell structure and became softer than nearby regions, which is typical for fatigue-loaded F82H. Possible mechanisms for how this cell structure ahead of cracks affects fracture toughness are suggested.
机译:用于分析断裂韧性数据的主曲线方法取决于以下假设:断裂起始点均匀分布且断裂起始与测试温度无关。还原活化的铁素体/马氏体钢,例如F82H(Fe-8Cr-2W-0.2V-0.04Ta),形成Al_2O_3-Ta(V,Ti)O复合夹杂物,并且在整个加热过程中其分布不均匀。微观结构不均匀 在过渡范围内似乎与F82H的双峰断裂相关。为了研究这种可能性,对F82H-IEA钢的1TCT断裂韧性试样进行了疲劳预裂纹处理,并将其切成整个试样厚度,以便对裂纹周围的组织进行分析。结果发现,裂纹在开始时是笔直的,然后趋于遵循先有的奥氏体晶界,最后又向两个或三个不同的方向分支。此外,周围的微观结构 裂纹和裂纹的前面形成了一个单元结构,并且变得比附近区域软,这对于疲劳载荷的F82H是典型的。建议可能的机制,这种单元格如何在裂纹之前影响断裂韧性。

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