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Fast synchrotron X-ray tomographic quantification of dendrite evolution during the solidification of Mg-Sn alloys

机译:快速同步辐射X射线断层扫描量化mg-sn合金凝固过程中的枝晶演变

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摘要

The evolution of dendritic microstructures during the solidification of a Mg-15 wt%Sn alloy was investigated in situ via fast synchrotron X-ray microtomography. To enable these in situ observations a novel encapsulation method was developed and integrated into a fast, pink beam, imaging beamline at Diamond Light Source. The dendritic growth was quantified with time using: solid volume fraction, tip velocity, interface specific surface area, and surface curvature. The influence of cooling rate upon these quantities and primary phase nucleation was investigated. The primary dendrites grew with an 18-branch, 6-fold symmetry structure, accompanied by coarsening. The coarsening process was assessed by the specific surface area and was compared with the existing models. These results provide the first quantification of dendritic growth during the solidification of Mg alloys, confirming existing analytic models and providing experimental data to inform and validate more complex numeric models.
机译:Mg-15 wt%Sn合金凝固过程中,通过快速同步X射线显微断层照相术原位研究了树枝状组织的演变。为了实现这些原位观察,开发了一种新颖的封装方法,并将其集成到Diamond Light Source的快速粉红色光束成像光束线上。使用以下时间对树突状生长进行定量:固体体积分数,尖端速度,界面比表面积和表面曲率。研究了冷却速率对这些数量和主相成核的影响。初级树突生长具有18分支,6倍的对称结构,并伴有粗化。通过比表面积评估粗化过程,并将其与现有模型进行比较。这些结果提供了镁合金凝固过程中树枝状晶体生长的首次量化,证实了现有的分析模型,并提供了实验数据以告知和验证更复杂的数值模型。

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