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A Multi-phase-field?Approach for Solidification with Non-negligible Volumetric Expansion—Application to Graphite Growth in Nodular Cast Iron

机译:一种多相现场?用不可忽略的体积扩展应用凝固到结节铸铁的石墨生长的方法

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摘要

Multi-phase field models have become powerful tools for prediction of microstructure evolution in technical alloys. Coupling to CALPHAD databases provides complex multicomponent multiphase thermodynamic data and diffusion matrices. Although many thermodynamic databases contain volume data, this information is by now hardly used for solidification, since a comprehensive modelling of volumetric expansion based on solid- and fluid-mechanics exceeds present computational capacities. A novel multicomponent multi-phase-field approach is presented which handles volumetric expansion in a simplified way. It assumes that temporary pressure caused by local expansion is instantaneously released by matter transport on a time scale much faster than diffusion. The new approach neglects any mechanical and kinetic aspects of expansion, but allows for a change in total volume and for thermodynamically consistent volume fractions. Moreover, expansion-driven matter fluxes and associated advective solute transport are considered. Application is illustrated by the example of spheroidal graphite growth in a hypoeutectic cast iron alloy.
机译:多相现场模型已成为技术合金中微观结构演化的强大工具。耦合到CalPHAD数据库提供复杂的多组分多相热力学数据和扩散矩阵。尽管许多热力学数据库包含体积数据,但是现在几乎没有用于凝固的信息,因为基于固体和流体 - 力学的体积膨胀的全面建模超过了现有的计算能力。提出了一种新的多组分多相场方法,其以简化的方式处理体积扩展。它假设由局部膨胀引起的临时压力通过物质运输瞬间释放,时间比扩散快得多。新方法忽略了膨胀的任何机械和动力学方面,但允许总体积的变化和热力学上一致的体积分数。此外,考虑扩增驱动的物质助熔剂和相关的平均溶质转运。通过双重康复铸铁合金中的球形石墨生长的实施例说明了应用。

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