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Sibirskii Zhurnal Industrial'noi Matematiki, 2013, Volume 16, Number 4, Pages 111–120
(Mi sjim809)
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Numerical simulation of alloy solidification under intensive conjugate heat transfer
V. V. Marshirov, L. E. Marshirova National Research University "Higher School of Economics", 25 Bolshaya Pecherskaya st., 603155 Nizhny Novgorod
Abstract:
We consider the problem of determining the rate of cooling of a metal during solidification at the intersection with the liquidus temperature under an intense heat removal from the surface. Solving this problem is necessary for determining the process conditions, the boundary and initial conditions for which it is possible to get new alloys with microcrystalline structures. We give the necessary finite-difference equations, describe the algorithm, and, using the known experimental data, test the obtained model. We investigate the influence of the size of the casting and the heat transfer coefficient on the cooling rate of an aluminum-based alloy at the liquidus temperature.
Keywords:
solidification simulation, finite-difference method, cooling rate, heat transfer coefficient, microcrystalline structure.
Received: 24.05.2013
Citation:
V. V. Marshirov, L. E. Marshirova, “Numerical simulation of alloy solidification under intensive conjugate heat transfer”, Sib. Zh. Ind. Mat., 16:4 (2013), 111–120
Linking options:
https://www.mathnet.ru/eng/sjim809 https://www.mathnet.ru/eng/sjim/v16/i4/p111
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Abstract page: | 366 | Full-text PDF : | 209 | References: | 76 | First page: | 5 |
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