Numerical simulation by finite element of stainless-steel solidification

Authors

Keywords:

Numerical simulation, FEM, solidification, stainless steels.

Abstract

The stainless-steel class is known for its resistance to corrosion and oxidation at high temperatures in aqueous media, as well as to impact, and also for its good durability. The solidification process was simulated in transient mode by finite elements of the stainless steel samples, where the thermophysical properties of both the sand mold and the steel were a function of temperature, whose result was the distribution of isotherms and thermal gradient as a function of temperature, and these phenomena can influence the segregation of alloying elements and the structure of the phases formed, and the results obtained computationally were satisfactory compared to experimental results in the literature.

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Author Biographies

Luiz Gustavo Kobilacz

Aluno do Departamento de Computação, Universidade Estadual de Ponta Grossa.

Moisés Meza Pariona, Universidade Estadual de Ponta Grossa

Doutor. Departamento de Matemática e Estatística. Universidade Estadual de Ponta Grossa-PR

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Published

2021-06-28

How to Cite

Kobilacz , L. G., & Pariona, M. M. (2021). Numerical simulation by finite element of stainless-steel solidification. Revista Brasileira De Iniciação Científica, 8, e021025. Retrieved from https://periodicoscientificos.itp.ifsp.edu.br/index.php/rbic/article/view/479