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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >Coupled simulation of microstructural formation and deformation behavior of ferrite-pearlite steel by phase-field method and homogenization method
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Coupled simulation of microstructural formation and deformation behavior of ferrite-pearlite steel by phase-field method and homogenization method

机译:相场法和均质化法耦合模拟铁素体-珠光体钢的组织和变形行为

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摘要

A coupled simulation by the phase-field (PF) method and the finite element method based on the homogenization theory (FEH) is developed to predict the microstructure formations and mechanical properties of ferrite-pearlite steels. The formation of the a phase during the isothermal γ → α transformation is simulated by the PF method. Furthermore, the FEH analysis is performed to clarify the effects of the predicted microstructure on the deformation behavior of the steels. In order to link to the FEH analysis, the microstructure in the steel is described by the representative volume element (RVE) based on the results of the PF simulation. The results reveal that although the macroscopic stress-strain relationship is mainly characterized by the volume fraction of the constituent phase, the localization of plastic strain is reduced due to the fine-grained a phase. This numerical model provides a systematic way of predicting the mechanical properties of steel depending on the microstructure.
机译:建立了基于均质化理论(FEH)的相场法(PF)和有限元法的耦合模拟,以预测铁素体-珠光体钢的组织形成和力学性能。用PF方法模拟了等温γ→α转变过程中a相的形成。此外,进行FEH分析以阐明预测的微观结构对钢变形行为的影响。为了链接到FEH分析,基于PF模拟的结果,用代表体积元素(RVE)描述了钢中的显微组织。结果表明,尽管宏观应力-应变关系主要由组成相的体积分数表征,但塑性相的局部化由于细颗粒相而减少。该数值模型提供了一种根据微观结构预测钢的机械性能的系统方法。

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