首页> 外文会议>International Conference on High Strength Low Alloy Steels >THE USE OF MODEL SYSTEMS BASED ON Fe-30 wt Ni FOR INVESTIGATING THE PRECIPITATION AND TRANSFORMATION BEHAVIOUR OF MICROALLOYED AUSTENITE
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THE USE OF MODEL SYSTEMS BASED ON Fe-30 wt Ni FOR INVESTIGATING THE PRECIPITATION AND TRANSFORMATION BEHAVIOUR OF MICROALLOYED AUSTENITE

机译:基于Fe-30wt%Ni的模型系统研究研究微合金奥氏体的沉淀和转化行为

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The development of physically-based models for the microstructural evolution during theimomechanical processing of metallic materials requires knowledge of the internal state variable data, such as microstructure, texture and dislocation substructure characteristics, over a range of processing conditions. This is a particular problem for steels, where the transformation of austenite to a variety of transformation products eradicates the hot deformed microstructure. This paper reports on a model Fe-30wt%Ni based alloy, which retains a stable austenitic structure at room temperature, and has therefore been used to model the development of austenite microstructure during hot deformation of conventional low carbon-manganese steels, thus providing for an understanding of the role of austenite microstructure on the subsequent transformation behaviour. It also provides an excellent model alloy system for microalloy additions, providing insight relating to the precipitation location and kinetics in the deformed austenite. This research will discuss the results from a microalloyed Fe-30% Ni-Nb alloy in which the strain induced precipitation mechanism was studied directly. The work has shown that precipitation can occur at a much finer scale and higher number density than hitherto considered, but that pipe diffusion leads to rapid coarsening. The implications of this for model development are discussed. Additional results will be shown for the effect of strain path reversal on the microstructural development of a model Fe-30wt%Ni alloy, compared with a C-Mn steel processed in a similar manner in order to establish a clearer understanding of the role of the austenite microstructure on subsequent transformation behaviour.
机译:基于物理的模型的金属材料的theimomechanical加工过程中组织演变的发展需要的内部状态变量数据,例如微结构,纹理和位错子结构特征的知识,在一定范围的加工条件。这是钢,其中奥氏体到各种转化产物转化根除热变形的微结构的特别的问题。这在基于模型的Fe-30重量%Ni合金,它保留在室温下稳定的奥氏体结构,并且因此被使用的常规的低碳锰钢的热变形过程中奥氏体微观结构的发展模式,从而提供了纸张报告的理解奥氏体组织对随后转化行为的作用。它也提供了极好的模型合金系统,用于微合金,提供与在变形的奥氏体析出位置和动力学的洞察力。本研究将讨论从其中应变诱导析出机构直接研究了微的Fe-30%Ni的-Nb合金的结果。该工作表明,沉淀可以以比考虑的更精细的比例和更高的数量密度发生,但是管道扩散导致快速粗化。讨论了这种模型发展的影响。附加结果将示出了用于应变路径逆转的模型上的Fe-30重量%Ni的合金的微观结构的发展的作用,具有为了以类似方式处理的C-Mn钢建立的作用更清楚地了解相比较在随后的转化行为的奥氏体组织。

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