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Temperature Dependence of Austenite Nucleation Behavior from Lath Martensite

机译:板条马氏体奥氏体成核行为的温度依赖性

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The temperature dependence of austenite nucleation behavior was investigated in an ultralow carbon 13%Cr–6%Ni martensitic stainless steel. The martensitic structure was partially reversed to austenite by heat treatment at different temperature in (austenite+ferrite) two-phase region. With increasing the reversion temperature, the shape of austenite grains tend to be changed from acicular to granular, and their nucleation site is changed from lath boundaries to prior austenite grain boundaries. The transition of nucleation site was discussed in terms of energetics by considering the increases in interfacial energy and elastic strain energy by formation of an austenite nucleus. The calculation results suggested that lath boundary is more preferential nucleation site rather than prior austenite grain boundary because the increment of elastic strain energy is reduced with lowing the reversion temperature.
机译:在超低碳13%Cr-6%Ni马氏体不锈钢中研究了奥氏体成核行为的温度依赖性。通过在(奥氏体+铁素体)两相区域中的不同温度下的热处理,马氏体结构部分地转变成奥氏体。随着回复温度的升高,奥氏体晶粒的形状趋于从针状变为粒状,并且其成核位置从板条边界变为先前的奥氏体晶粒边界。通过考虑通过形成奥氏体核而增加的界面能和弹性应变能,从高能学的角度讨论了成核部位的转变。计算结果表明,板条边界比原先的奥氏体晶界更优先成核,这是因为随着回复温度的降低,弹性应变能的增加减小。

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