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The Evolution of Ultrafine Grained Structure Formation Through Isothermal Static Phase Transformation

机译:等温静态相变形成超细晶粒结构的演变

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In the current study, a 0.3C-2Si-2Mn-0.28Mo (in wt%) steel with high hardenability was deformed at a relatively low temperature followed by isothermal static phase transformation. This novel thermomechanical processing made it possible to successfully produce an ultrafine ferrite grained structure (~2 μm) in the absence of both dynamic phase transformation and controlled cooling.The use of a model Ni-30Fe austenitic alloy showed that the low temperature deformation induced very fine intragranular defects throughout the microstructure, which would then act as fine spaced ferrite nucleation sites at an early stage of phase transformation.As a result,the coarsening of ferrite was extremely limited during isothermal phase transformation,resulting a very fine ferrite grained structure;even nanoscale in the region of the prior austenite grain boundary.
机译:在当前的研究中,具有较高淬透性的0.3C-2Si-2Mn-0.28Mo(重量%)钢在相对较低的温度下发生变形,然后进行等温静态相变。这种新颖的热机械加工方法可以在没有动态相变和受控冷却的情况下成功生产出超细的铁素体晶粒结构(〜2μm)。Ni-30Fe奥氏体合金模型的使用表明,低温变形非常容易引起在整个显微组织中存在细小的晶粒内缺陷,这些缺陷在相变的早期就充当了细小的铁素体形核位点。结果,在等温相变过程中,铁素体的粗化受到了极大的限制,从而形成了非常细小的铁素体晶粒结构;甚至奥氏体晶界区域的纳米级。

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