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Local conditions at moving α/γ boundaries of proeutectoid ferrite transformation in iron alloys

机译:铁合金中共析铁素体相变的移动α/γ边界的局部条件

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The local conditions at moving α/γ boundaries in iron alloys are examined from the data on growth kinetics, solute partitioning, and critical limit of transformation. In Fe-C alloys, local equilibrium of carbon is likely to be sustained at the majority of α/γ boundaries during the growth of allotriomorphic ferrite except at some boundaries containing immobile low-energy facets. In Fe-C-X alloys, there is experimental evidence that local equilibrium of the substitutional alloying element is established at higher temperatures. However, growth under near paraequilibrium conditions may be prevalent at lower temperatures and at early growth stages. The diffusion of alloying elements in ferrite and along the austenite grain boundary may have a significant influence on the growth of ferrite near the boundary between fast and slow growth. The growth of Widmanstätten and bainitic ferrite is likely controlled by carbon diffusion, that is, without a supersaturation of carbon, while the chemical condition of carbon near the plate edge may not be identical to that of a planar disordered α/γ boundary.
机译:根据有关生长动力学,溶质分配和相变临界极限的数据,研究了铁合金中移动的α/γ边界的局部条件。在Fe-C合金中,在同素异形铁素体生长过程中,大部分α/γ边界可能会维持碳的局部平衡,除了某些包含固定的低能小平面的边界之外。在Fe-C-X合金中,有实验证据表明,替代合金元素的局部平衡是在较高温度下建立的。但是,在接近平衡的条件下生长可能会在较低温度和早期生长阶段盛行。合金元素在铁素体中以及沿奥氏体晶界的扩散可能会对快慢生长边界附近的铁素体的生长产生重大影响。 Widmanstätten和贝氏体铁素体的生长可能受碳扩散的控制,也就是说,没有碳的过饱和,而板边缘附近的碳的化学条件可能与平面无序α/γ边界的化学条件不同。

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