Computation material science of structural-phase transformation in casting aluminium alloys

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Abstract

Successive stages of computer simulation the formation of the casting microstructure under non-equilibrium conditions of crystallization of multicomponent aluminum alloys are presented. On the basis of computer thermodynamics and heat transfer during solidification of macroscale shaped castings are specified the boundary conditions of local heat exchange at mesoscale modeling of non-equilibrium formation the solid phase and of the component redistribution between phases during coalescence of secondary dendrite branches. Computer analysis of structural - phase transitions based on the principle of additive physico-chemical effect of the alloy components in the process of diffusional - capillary morphological evolution of the dendrite structure and the o of local dendrite heterogeneity which stochastic nature and extent are revealed under metallographic study and modeling by the Monte Carlo method. The integrated computational materials science tools at researches of alloys are focused and implemented on analysis the multiple-factor system of casting processes and prediction of casting microstructure.

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Golod, V. M., & Dobosh, L. Y. (2017). Computation material science of structural-phase transformation in casting aluminium alloys. In IOP Conference Series: Materials Science and Engineering (Vol. 192). Institute of Physics Publishing. https://doi.org/10.1088/1757-899X/192/1/012027

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