J. Mater. Sci. Technol. ›› 2020, Vol. 48: 9-17.DOI: 10.1016/j.jmst.2020.02.009
• Research Article • Previous Articles Next Articles
Kuiliang Zhanga,b, Yingju Lia,b, Yuansheng Yanga,b,*()
Received:
2019-10-13
Accepted:
2019-12-26
Published:
2020-07-01
Online:
2020-07-13
Contact:
Yuansheng Yang
Kuiliang Zhang, Yingju Li, Yuansheng Yang. Influence of the low voltage pulsed magnetic field on the columnar-to-equiaxed transition during directional solidification of superalloy K4169[J]. J. Mater. Sci. Technol., 2020, 48: 9-17.
Fig. 1. (a) Sketch of directional solidification apparatus with the LVPMF; (b) Liquid melt quenching sample with a meniscus solid-liquid interface; (c) 2D finite element model.
Fig. 7. Solidification structure of superalloy K4169 with different withdrawal speeds under LVPMF: (a) 0.25 mm/s, (b) 0.75 mm/s, (c) 1.25 mm/s, (d) 1.75 mm/s.
Fig. 9. Comparison of the experimentally measured and theoretically predicated radial variation of the axial velocity component at a height of 225 mm.
Fig. 10. Distribution of electromagnetic force in the upward period (a) and in the falling period (b); (c) Variation of electromagnetic force along the axial direction in the melt.
Fig. 14. Stress simulation of flowing melt acts on the dendrite. (a) Finite element mesh; (b) Distribution of fluid velocity; (c) Stress distribution of the dendrite.
Fig. 16. Sketch showing the variation of liquid undercooling in the front of the solid-liquid interface without LVPMF (a) and with LVPMF (b) in the melt.
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