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Refinement and growth enhancement of Al2Cu phase during magnetic field assisting directional solidification of hypereutectic Al-Cu alloy

机译:磁场辅助过共晶Al-Cu合金定向凝固过程中Al2Cu相的细化和生长增强

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摘要

Understanding how the magnetic fields affect the formation of reinforced phase during solidification is crucial to tailor the structure and therefor the performance of metal matrix in situ composites. In this study, a hypereutectic Al-40 wt.%Cu alloy has been directionally solidified under various axial magnetic fields and the morphology of Al2Cu phase was quantified in 3D by means of high resolution synchrotron X-ray tomography. With rising magnetic fields, both increase of Al2Cu phase’s total volume and decrease of each column’s transverse section area were found. These results respectively indicate the growth enhancement and refinement of the primary Al2Cu phase in the magnetic field assisting directional solidification. The thermoelectric magnetic forces (TEMF) causing torque and dislocation multiplication in the faceted primary phases were thought dedicate to respectively the refinement and growth enhancement. To verify this, a real structure based 3D simulation of TEMF in Al2Cu column was carried out, and the dislocations in the Al2Cu phase obtained without and with a 10T high magnetic field were analysed by the transmission electron microscope.
机译:了解磁场如何影响凝固过程中增强相的形成对于调整金属基体原位复合材料的结构及其性能至关重要。在这项研究中,过共晶Al-40wt。%Cu合金已在各种轴向磁场下定向凝固,并通过高分辨率同步加速器X射线断层扫描在3D中量化了Al2Cu相的形态。随着磁场的升高,Al2Cu相的总体积增加,而每列的横截面面积减小。这些结果分别表明在辅助定向凝固的磁场中,初生Al2Cu相的生长增强和细化。人们认为,在多面主相中引起扭矩和位错倍增的热电磁力(TEMF)分别致力于细化和生长增强。为了验证这一点,在Al2Cu柱中进行了基于真实结构的TEMF的3D模拟,并通过透射电子显微镜分析了在没有和有10T强磁场的情况下获得的Al2Cu相中的位错。

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