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Application of Advanced Experimental Techniques for the Microstructural Characterization of Nanobainitic Steels

机译:先进实验技术在纳米贝氏体钢显微组织表征中的应用

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A 0.79C-1.5Si-1.98Mn-0.98Cr-0.24Mo-1.06Al-1.58Co (wt%) steel was isothermally heat treated at 350°C bainitic transformation temperature for 1 day to form fully bainitic structure with nano-layers of bainitic ferrite and retained austenite, while a 0.26C-1.96Si-2Mn-0.31Mo (wt%) steel was subjected to a successive isothermal heat treatment at 700°C for 300 min followed by 350°C for 120 min to form a hybrid microstructure consisting of ductile ferrite and fine scale bainite. The dislocation density and morphology of bainitic ferrite, and retained austenite characteristics such as size, and volume fraction were studied using Transmission Electron Microscopy. It was found that bainitic ferrite has high dislocation density for both steels. The retained austenite characteristics and bainite morphology were affected by composition of steels. Atom Probe Tomography (APT) has the high spatial resolution required for accurate determination of the carbon content of the bainitic ferrite and retained austenite, the solute distribution between these phases and calculation of the local composition of fine clusters and particles that allows to provide detailed insight into the bainite transformation of the steels. The carbon content of bainitic ferrite in both steels was found to be higher compared to the para-equilibrium level of carbon in ferrite. APT also revealed the presence of fine C-rich clusters and Fe-C carbides in bainitic ferrite of both steels.
机译:将0.79C-1.5Si-1.98Mn-0.98Cr-0.24Mo-1.06Al-1.58Co(wt%)钢在350°C的贝氏体转变温度下进行等温热处理1天,以形成具有纳米层的完全贝氏体组织。贝氏体铁素体和残余奥氏体,同时对0.26C-1.96Si-2Mn-0.31Mo(wt%)钢进行连续等温热处理,在700°C下进行300分钟,然后在350°C下进行120分钟以形成杂化体显微组织由韧性铁素体和细鳞状贝氏体组成。用透射电子显微镜研究了贝氏体铁素体的位错密度和形貌,以及残余奥氏体的特征,例如尺寸和体积分数。发现贝氏体铁素体对于两种钢都具有高位错密度。残余奥氏体特性和贝氏体形态受到钢成分的影响。原子探针断层扫描(APT)具有准确确定贝氏体铁素体和残余奥氏体的碳含量,这些相之间的溶质分布以及计算细团簇和颗粒的局部组成所需的高空间分辨率,从而可以提供详细的见解进入钢的贝氏体转变。发现两种钢中贝氏体铁素体的碳含量均高于铁素体中碳的准平衡碳含量。 APT还揭示了两种钢的贝氏体铁素体中都存在细的富C团簇和Fe-C碳化物。

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