Dynamic recrystallization is one of the main phenomena responsible for microstructure evolutions during hot forming. Consequently, getting a better understanding of DRX mechanisms and being able to predict them is crucial. This paper proposes a full-field numerical framework to predict the evolution of subgrain structures upon grain growth, continuous dynamic and post-dynamic recrystallization. The microstructure representation into the numerical environment is presented. The developments made to improve substructure description are detailed extensively. Using these simulation tools, simulation of grain growth of a fully substructured microstructure are run. The influence of microstructure topology, of subgrain parameters and of some remaining stored energy due to plastic deformation is discussed. An analysis of the criterion for discrimination of recrystallized grains is proposed. Finally, the ability of the framework to model continuous dynamic and post-dynamic recrystallization is assessed upon a case study. The influence of grain boundary properties and of nucleation rules are studied. The representativity of the results in regards of experimental data will be discussed in an upcoming article.
翻译:动态内晶化是造成热形成过程中微结构演变的主要现象之一。因此,更好地了解DRX机制并能够预测它们至关重要。本文件提议了一个完整的数字框架,以预测在谷物生长、持续动态和后动态内晶化时亚grain结构的演变情况;介绍了微结构在数字环境中的体现情况;详细介绍了改进亚结构描述的动态;利用这些模拟工具,模拟全亚结构微结构的谷物生长情况;讨论了微结构结构表层学、亚grain参数和由于塑料变形而剩余储存的能量的影响;提议了对内晶质谷物歧视标准的分析;最后,在案例研究中评估了框架模拟持续动态和后动态内晶化的能力;研究了谷物边界特性和核分离规则的影响;将在即将发表的文章中讨论实验数据结果的代表性。