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Diffusional and displacive transformations in interstitial-free steel within the scope of a critical assessment of the mechanical property

机译:自由间隙钢中的扩散和流离变性转化范围内的机械性能的关键评估范围

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摘要

Interstitial-free steel is fully ferritic at room temperature, extremely soft and ductile. The strengthening is a key focus of the present study through heat treatment. The samples are soaked in the austenitic temperature domain followed by different rates of cooling in furnace, air, and water quenching. The cooling curves obtained from the experiments are superimposed in the computed CCT diagram to predict and discuss various microstructure formations by diffusional and displacive mechanisms of the phase transformations which is lacking in the system. Essentially, the best combination of strength-ductility is obtained in the water quenched sample, compared to the reported techniques, for a detailed analysis. The electron microscopy hints at a lath type morphology with high dislocation density. The selected area diffraction pattern has indexed the lattice of the product phase as BCC. Further, the image quality (IQ) map, grain boundary misorientation, as well as Kurdjumov-Sachs (K-S) orientation relationships with parent austenite confirm the lath as martensite through variant selections. For the mechanical property assessment with EBSD, the role of the hierarchical structures of martensite (e.g., packet, block and sub-block boundaries) to the dislocation pinning is discussed against microstructural contributions to resolve ambiguity in the strengthening process.
机译:自由型钢在室温下是完全铁素体,极其柔软和延展性。通过热处理,加强是本研究的关键重点。将样品浸泡在奥氏体温度域中,然后在炉内,空气和水猝灭中进行不同的冷却速率。从实验中获得的冷却曲线在计算的CCT图中叠加,以通过在系统中缺乏的相变的漫射和移位机制来预测和讨论各种微观结构形成。基本上,与报告的技术相比,在水猝灭样品中获得了强度 - 延展性的最佳组合,以进行详细分析。电子显微镜用高位脱位密度的板条型形态提示。所选择的区域衍射图案已将产物阶段的晶格指定为BCC。此外,图像质量(IQ)地图,晶界杂散化以及与母体奥氏体的kurdjumov-sachs(K-S)取向关系通过变体选择确​​认Lath作为马氏体。对于用EBSD进行机械性能评估,讨论了马氏体(例如,分组,块,块和子块边界)到位错钉扎的角色的作用,以解决在加强过程中的模糊性中解决模糊性的微观结构贡献。

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