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Multi-Phase-Field Analysis of Stress-Strain Curve and Ferrite Grain Formation during Dynamic Strain-induced Ferrite Transformation

机译:动态应变诱导铁氧体转化中应力 - 应变曲线和铁氧体晶粒形成的多相场分析

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A numerical model of dynamic strain-induced ferrite transformation (DSFT) was developed by combining the multi-phase-field model with the Kocks-Mecking model. Using the developed model, a three-dimensional simulation of the DSFT in a Fe-C alloy was performed to study the correlation between the variation in flow stress and the microstructure evolution during the DSFT. The simulation results indicated that the developed model successfully simulated the characteristic DSFT behavior, i.e., both the stress-strain curve with a single peak and the formation of an ultrafine-grained ferrite microstructure. The variation in the flow stress during the DSFT was characterized by the volume fraction of the ferrite phase.
机译:通过将多相场模型与Kocks-Mecking模型组合来开发动态应变诱导的铁氧体转换(DSFT)的数值模型。 使用开发的模型,进行了Fe-C合金中的DSFT的三维模拟,以研究DSFT期间流量应力变化与微观结构演化之间的相关性。 仿真结果表明,开发模型成功地模拟了具有单峰的应力 - 应变曲线,以及超细颗粒式铁氧体微观结构的形成。 在DSFT期间的流量应力的变化特征在于铁氧体相的体积分数。

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