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Effect of Composition and Processing Parameters on the Formation of Nano-Bainite in Advanced High Strength Steels

机译:成分和加工参数对高级高强度钢中纳米贝氏体形成的影响

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The nano-bainitic microstructures were compared in a 0.79C-1.5Si-1.98Mn-0.24Mo-1.06Al (wt%) steel after isothermal heat-treatment and a Fe-0.2C-1.5Mn-1.2Si-0.3Mo-0.6Al-0.02Nb (wt%) steel after controlled thermomechanical processing.The microstructure for both steels consisted of bainite. The microstructural characteristics of bainite, such as the morphology of the nano-bainite and thicknesses of bainitic ferrite and retained austenite layers, as a function of steel composition and processing was studied using transmission electron microscopy (TEM). It was found that the nano-bainitic structure can be formed in the low alloy steel through thermomechanical processing. Atom probe tomography (APT) was employed as a powerful technique to determine local composition distributions in three dimensions with atomic resolution. The important conclusions from the APT research were that the carbon content of bainitic ferrite is higher than expected from paraequilibrium level of carbon in ferrite for both steels and that Fe-C clusters and fine particles are formed in the bainitic ferrite in both steels despite the high level of Si.
机译:在等温热处理后的0.79C-1.5Si-1.98Mn-0.24Mo-1.06Al(wt%)钢和Fe-0.2C-1.5Mn-1.2Si-0.3Mo-0.6中比较了纳米贝氏体组织经过受控的热机械加工后的Al-0.02Nb(wt%)钢。两种钢的显微组织均由贝氏体组成。利用透射电子显微镜(TEM)研究了贝氏体的显微组织特征,例如纳米贝氏体的形态,贝氏体铁素体和残余奥氏体层的厚度,随钢成分和工艺的变化。已经发现,可以通过热机械加工在低合金钢中形成纳米贝氏体组织。原子探针层析成像(APT)被用作一种强大的技术,可通过原子分辨率确定3维的局部成分分布。 APT研究的重要结论是,两种钢的贝氏体铁素体的碳含量均高于碳的准平衡水平所预期的水平,尽管钢中贝氏体铁素体的碳含量很高,但贝氏体铁素体中仍会形成Fe-C团簇和细小颗粒Si的水平。

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