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Finite Element Modelling Of Tensile Test For Micro-Alloyed Low Carbon Steel At High Temperature

Changli Zhang, Michel Bellet

2010enfinite elementtensile testmicro-alloyed steelhigh temperaturesimulation

Abstract

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This study focuses on the finite element modelling of tensile tests specifically designed for micro-alloyed low carbon steel under high temperature conditions. The primary objective is to enhance the understanding of the material behavior and improve the predictive capabilities for such tests. A detailed methodology was developed, encompassing the application of finite element analysis tools to simulate the tensile testing process, taking into account the thermal effects and material characteristics relevant to micro-alloyed low carbon steels. The results demonstrated that the finite element models can accurately replicate the tensile behavior of the materials under elevated temperatures, revealing significant insights into the mechanical properties influenced by high temperatures. The findings underscore the importance of incorporating thermal effects in the modelling process and provide a foundation for future research into the behaviour of micro-alloyed steels in practical applications. The study contributes to both academic scholarship and industrial practices by advancing the current state of knowledge in materials science and engineering pertaining to high-temperature applications in steel metallurgy.

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Cite This Work

@article{662dacd3-ccd9-4a98-90a6-f0a57a0201be,
  title={Finite Element Modelling Of Tensile Test For Micro-Alloyed Low Carbon Steel At High Temperature},
  author={Changli Zhang and Michel Bellet},
  year={2010},
  language={en}
}
TY  - JOUR
TI  - Finite Element Modelling Of Tensile Test For Micro-Alloyed Low Carbon Steel At High Temperature
AU  - Changli Zhang
AU  - Michel Bellet
PY  - 2010
LA  - en
ER  -

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