[1] h j wang, r xu, h t ling*, et al. numerical simulation of fluid flow and alloy melting in rh process for electrical steels[j]. journal of iron and steel research international, 2022, 29: 1423-1433. [2] r xu, h t ling*, h j wang, et al. investigation on the effects of ladle change operation and tundish cover powder on steel cleanliness in a continuous casting tundish[j]. steel research international, 2021, doi.org/10.1002/srin.202100072. [3] h t ling, r xu, h j wang, et al. multiphase flow behavior in a single-strand continuous casting tundish during ladle change[j]. isij international, 2020, 60(3): 499-508. [4] h t ling*, l f zhang. numerical simulation of gas and liquid two-phase flow in the rh process[j]. metallurgical and materials transactions b, 2019, 50(4): 2017-2028. [5] h t ling*, l f zhang. a mathematical model for prediction of carbon concentration during rh refining[j]. metallurgical and materials transactions b, 2018, 49(6): 2963-2968. [6] h t ling*, l f zhang. investigation on the fluid flow and decarburization process in the rh process[j]. metallurgical and materials transactions b, 2018, 49(5): 2709-2721. [7] h t ling, l f zhang. effect of snorkel shape on the fluid flow during rh degassing process: mathematical modeling[j]. ironmaking & steelmaking, 2018, 45(2): 145-156. [8] r xu, h t ling*, et al. investigation on the control of multiphase flow behavior in a continuous casting tundish during ladle change[j]. metallurgical research & technology, 2020, 117(6): 619. [9] h t ling*, l f zhang, h j wang. effect of different removal conditions on the growth and removal of inclusions in the molten steel in a two-strand tundish[j]. metallurgical research & technology, 2017, 114(5): 516. |