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Optimization strategies for identifying the controlling mechanism for solid-state transformation in FeCrNi during rapid solidification

机译:识别快速凝固固态变换控制机制的优化策略

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摘要

Retained free energy drives the transformation from metastable to stable phase during double recalescence of steel alloys. Statistical methods were used to identify the mechanism controlling cluster growth based on the principle of microstructural reversibility. Application of the coefficient of determination during optimization procedures showed that an extrinsic mechanism controls nucleation and that negligible healing occurs such that retained free energy from primary phase undercooling and melt convection enhance secondary nucleation.
机译:保留的自由能量在钢合金的双重复制期间驱动稳定相的转化。基于微观结构可逆性原理,使用统计方法识别控制簇生长的机制。在优化程序期间测定系数的应用表明,外部机制控制成核,而且发生可忽略的愈合,使得从一代过冷和熔体对流中保留自由能量增强二级成核。

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