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NUMERICAL MODELING OF HEAT AND MASS TRANSFER IN LASER SURFACE ALLOYING: NON-EQUILIBRIUM SOLIDIFICATION EFFECTS

机译:激光合金表面传热和传质的数值模拟:非平衡凝固效应

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摘要

A transient macroscopic model is developed for studying heat and mass transfer in a single-pass laser surface alloying process, with particular emphasis on non-equilibrium solidification considerations. The solution for species concentration distribution requires suitable treatment of non-equilibrium mass transfer conditions. In this context, microscopic features pertaining to non-equilibrium effects on account of solutal undercooling are incorporated through the formulation of a modified partition-coefficient. The effective partition-coefficient is numerically modeled by means of a number of macroscopically observable parameters related to the solidifying domain. The numerical model is so developed that the modifications on account of non-equilibrium solidification considerations can be conveniently implemented in existing numerical codes based on equilibrium solidification considerations.
机译:开发了一个瞬态宏观模型,用于研究单程激光表面合金化过程中的传热和传质,尤其着重于非平衡凝固的考虑。用于物种浓度分布的解决方案需要对非平衡传质条件进行适当处理。在这种情况下,通过改进的分配系数,可以归因于过冷过冷而引起的与非平衡效应有关的微观特征。有效分配系数通过与凝固域有关的许多宏观可观察参数进行数值建模。如此开发数值模型,使得基于非平衡凝固考虑因素的修改可以方便地在基于平衡凝固考虑因素的现有数字代码中实施。

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