4.7 Article

Modeling of microstructure formation with gas porosity growth during columnar dendritic solidification of aluminum alloys

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出版社

ELSEVIER
DOI: 10.1016/j.jmrt.2021.12.078

关键词

Microporosity; Columnar dendritic; Lattice Boltzmann model; Cellular automation

资金

  1. National Key Research and Development Program [2018YFB2001800]
  2. Natural Science Foundation of Shaanxi Province in China [2020JM-111]
  3. National Natural Science Foundation of China [51901148]
  4. Fund of the State Key Laboratory of Solidification Processing in NPU [SKLSP202006]

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This study numerically investigates microstructure formation with gas bubble growth during columnar dendritic solidification using a coupled lattice Boltzmann cellular automaton-finite difference (LB-CA-FD) model. The results show that the cooling rate significantly affects the nucleation and growth rates of gas bubbles, while the misorientation angle influences the morphology of columnar dendritic arrays and bubble distribution.
In this paper, microstructure formation with gas bubble growth during columnar dendritic solidification has been numerically investigated by using the coupled lattice Boltzmann cellular automaton-finite difference (LB-CA-FD) model, which combines the physical mechanisms of the redistribution of hydrogen components at the solid-liquid interface and the transportation of hydrogen atoms in liquid. Hydrogen transportation, bubble nucleation and growth are computed by the LB method while the growth of columnar dendrite and the transport of solutes are described by the CA-FD model. Predicted results show that the bubbles begin to nucleate at the roots of primary dendritic trunk and secondary arms, and elongated irregular bubbles are sandwiched between neighboring dendrites after merging and moving during the growth stage. Columnar dendritic change from coarse and ordered to fine and disordered as the cooling rate is increased. Meanwhile, the cooling rate has a significant effect on the incubation time for gas bubbles and the maximum growth rate of porosity. It was found that the misorientation angle has limited effects on the solid fraction and porosity percentage but strongly influences on the morphologies of the columnar dendritic arrays, resulting in the different distributions of bubbles. (C) 2021 The Authors. Published by Elsevier B.V.

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