Identification of Heat Transfer Parameters for Gravity Sand Casting Simulations

Author:

Vergnano Alberto1ORCID,Facondini Pietro2,Morselli Nicolò1ORCID,Veronesi Paolo1ORCID,Leali Francesco1ORCID

Affiliation:

1. Enzo Ferrari Department of Engineering, University of Modena and Reggio Emilia, Via P. Vivarelli 10, 41125 Modena, Italy

2. Fonderia Morri, Via A. Manzoni 7, 47853 Cerasolo, Italy

Abstract

Gravity sand casting simulations require accurate modelling of heat transfer phenomena to reliably evaluate the expected quality of the produced parts. Average model parameters can be easily retrieved from a validated database. However, these parameters are highly dependent on the specific sand used and the actual forming process in the foundry. Furthermore, the heat transfer from the solidifying alloy to the mould surfaces is not precisely known, so simulation models usually use typical values for overall heat transfer coefficients. Most research works investigate individual parameters, whereas heat transfer phenomena largely arise from their interaction together. Therefore, the present work describes a combined experimental and computational method based on genetic algorithm techniques for determining the most important parameters for heat transfer in a sand mould. The experiments examine both virgin and reused sand, as these are alternatively used in the foundry for mould forming. The density, thermal conductivity, and specific heat capacity of the different sands are identified, along with heat transfer coefficients. The counterproof simulations demonstrate that the standard parameters are quite reliable for virgin sand. However, in the case of reused sand, the identified parameters lead to more reliable results.

Funder

Fonderia Morri

Publisher

MDPI AG

Reference21 articles.

1. A comparative study of simulation software for modelling metal casting processes;Khan;Int. J. Simul. Model.,2018

2. Casting simulation and optimisation: Benefits, bottlenecks and best practices;Ravi;Indian. Foundry J.,2008

3. A method for yield and cycle time improvements in Al alloy casting with enhanced conductivity steel for die construction;Vergnano;Manuf. Rev.,2022

4. Thermal diffusivity, heat capacity and thermal conductivity of porous partially stabilized zirconia;Swain;J. Mater. Sci.,1986

5. Thermal conductivity of highly porous zirconia;Haberko;J. Eur. Ceram. Soc.,2006

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