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Heterogeneous austenite grain growth in martensitic 9cr steel: coupled influence of initial metallurgical state and heating rate

机译:马氏体9cr钢中非均质奥氏体晶粒长大:初始冶金状态和加热速率的耦合影响

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摘要

The coupled influence of the initial metallurgical state and the heating rate to austenite on the occurrence of heterogeneous grain growth during austenitisation of an ASTM A213-T91 steel has been studied. To that aim, two-step thermal cycles were designed. In the first step, different starting metallurgical conditions were obtained by treating the as received material at 780°C for increasing times up to 6 h. In the second step, in situ austenitisation was performed by heating to austenite at rates of 1, 30 and 50°C s~(-1) and then holding at 1050°C for 30'. Two types of austenite grain structures were obtained after austenitisation, namely, homogeneous and heterogeneous. The homogeneous structure was characterised by a smooth size distribution of approximately equiaxed, normally grown grains. The heterogeneous structure, instead, exhibited the exaggerated growth of a few austenite grains embedded in a small to medium sized matrix. For the 1°C s~(-1) heating rate and all of the initial metallurgical states, only homogeneous grain growth was observed, whereas for the 50°C s~1 heating rate only heterogeneous grain growth was observed regardless the starting metallurgical condition. Instead, the occurrence of homogeneous or heterogeneous grain growth after heating at 30°C s~(-1) was observed to be a function of the time of previous tempering. Some explanations of the phenomenon are advanced taking into account the precipitation state of second phases.
机译:研究了初始冶金状态和奥氏体加热速率对ASTM A213-T91钢奥氏体化过程中异质晶粒生长的影响。为此,设计了两步热循环。在第一步中,通过将原始材料在780°C下处理长达6小时,从而获得了不同的起始冶金条件。在第二步中,通过以1、30和50°C s〜(-1)的速率加热至奥氏体,然后在1050°C保持30'进行原位奥氏体化。奥氏体化后获得两种奥氏体晶粒结构,即均质和非均质。均质结构的特征是大致等轴的正常生长晶粒的尺寸分布平滑。相反,异质结构表现出嵌入在中小型基体中的一些奥氏体晶粒的过度生长。对于1°C s〜(-1)加热速率和所有初始冶金状态,仅观察到均匀的晶粒长大,而对于50°C s〜(-1)加热速率,无论起始冶金条件如何,仅观察到异质晶粒长大。取而代之的是,观察到在30°C s〜(-1)加热后均匀或不均匀晶粒的生长是先前回火时间的函数。考虑到第二阶段的沉淀状态,对该现象进行了一些解释。

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