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Ferrite Effects in Fe-Mn-AI-C Triplex Steels

机译:Fe-Mn-Al-C三重钢中的铁素体效应

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摘要

In order to determine the ferrite effect on tensile properties of Fe-28.8Mn-9.4Al-C Triplex steels, four Triplex steel sheets with different carbon contents were solution treated under various conditions leading to different ferrite fractions ranging from 0 to 39 pct. This approach was used as it was very difficult to prepare samples with a wide range of ferrite contents from only one grade. However, in order to isolate the ferrite effect from this approach, it was necessary to precisely know the effect of the austenite carbon content and that of the austenite grain size on tensile properties of fully austenitic samples. This is why, a preliminary study was performed to assess these two effects, which required a thorough analysis of the microstructures of the investigated samples combining electron backscattered diffraction experiments and transmission electron microscopy observations. The study of fully austenitic samples led us to the conclusion that a decrease in the austenite grain size leads to higher strength and lower elongation and that the austenite carbon content has a greatly significant influence on tensile properties. However, this influence was difficult to estimate with a very good accuracy. Finally, the study of samples with different ferrite contents showed that ferrite had a positive effect on strength when its content was lower than 5 pct. In contrast, a higher content of ferrite (more than 30 pct) has a deleterious effect on mechanical properties.
机译:为了确定铁素体对Fe-28.8Mn-9.4Al-C三重钢的拉伸性能的影响,在不同条件下对四种具有不同碳含量的三重钢板进行固溶处理,导致铁素体分数在0至39%之间。之所以使用这种方法,是因为很难仅从一个等级制备具有宽范围铁素体含量的样品。但是,为了从这种方法中分离出铁素体效应,必须精确了解奥氏体碳含量和奥氏体晶粒尺寸对完全奥氏体样品的拉伸性能的影响。这就是为什么要进行初步研究以评估这两种作用的原因,这需要结合电子背散射衍射实验和透射电子显微镜观察对被研究样品的微观结构进行全面分析。对完全奥氏体样品的研究得出的结论是,奥氏体晶粒尺寸的减小会导致强度的提高和伸长率的降低,并且奥氏体碳含量对拉伸性能具有极大的影响。但是,很难以很高的准确度估算这种影响。最后,对不同铁素体含量的样品的研究表明,当铁素体含量低于5 pct时,对强度有积极的影响。相反,较高含量的铁素体(大于30 pct)对机械性能具有有害影响。

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