Журналы →  Materialy Elektronnoi Tekhniki →  2012 →  №3 →  Назад

MODELING OF PROCESSES AND MATERIALS
Название Mathematical Modeling of Extrusion Process of Thermoelectric Material
Автор M. G. Lavrentev, M. V. Mezhenny, V. B. Osvensky, A. I. Prostomolotov
Информация об авторе

Giredmet

M. G. Lavrentev

V. B. Osvensky

 

TISNUM

M. V. Mezhenny

 

Institute for Problems of Mechanics, Russian Academy of Sciences, Moscow

A.Yu. Ishlinsky

Реферат

We derive a mathematical model for the composite material extrusion process which describes the main features of the resulting material stress−strain state. The extrusion process includes extrusion of a cylindrical billet of pressed powder through a die of desired geometry. Die geometrical parameters and process speed can be preset. The computational model is based on combined elastic−plastic body approximation. The numerical technique uses a finite element approximation on Lagrangian grid, which changes over time with changes in sample shape. To perform it we use adaptive grid units generation in areas of sample high stress and strain. The calculations were performed in Crystmo/Marc software package. We study the basic features of stress−strain state of the material obtained at different stages of extrusion process.

Ключевые слова Mathematical modeling, extrusion, composite material, bismuth telluride, strain, stress, die
Библиографический список

1. Sabo, E. P. Tekhnologiya khal'kogenidnykh termoelementov. Fizicheskie osnovy / E. P. Sabo // Termoelektrichestvo. − 2004. − № 1. − S. 58—72.

2. Bulat, L. P. Termoelektricheskoe okhlazhdenie./ L. P. Bulat − SPb. : SPbGUNiPT, 2002. − 147 s.
3. Sabo, E. P. Tekhnologiya khal'kogenidnykh termoelementov. Fizicheskie osnovy / E. P. Sabo // Termoelektrichestvo. − 2006. − № 1. − S. 45—66.
4. Sabo, Ye. P. Technology of chalcogen thermoelements. physical foundations / Ye. P. Sabo // J. Thermoelectricity. − 2005. − N 3. − P. 52—68.
5. Yang, J. Microstructure control and thermoelectric properties improvement to n−type bismuth telluride based materials by hot extrusion / J. Yang, R. Chen, X. Fan, W. Zhu, S. Bao, X. Duan // J. Allows and Compounds. − 2007. − V. 429. − P. 156—162.
6. Eger, Dzh. K. Uprugost', prochnost' i tekuchest' / Dzh. K. Eger − M. : Mashgiz, 1961. − 170 s.
7. Horrobin, D. J. Die entry pressure drops in paste extrusion / D. J. Horrobin, R. M. Nedderman // Chemical Eng. sci. − 1998. − V. 53, N 18. − P. 3215—3225.
8. Tiernan, P. Modelling of cold extrusion with experimental verification / P. Tiernan, M. T. Hillery, B. Graganescu, M. Gheorghe // J. Materials Processing Technology. − 2005. − V. 168. − P. 360—366.
9. Prostomolotov, A. I. Programma «CRYSTMO/MARC» dlya sopryazhennogo teplovogo modelirovaniya / A. I. Prostomolotov, N. A. Verezub, Kh. Kh Il'yasov // Programmy dlya EVM. RU OBPBT. − 2009 − № 4. − S. 110.

Language of full-text русский
Полный текст статьи Получить
Назад