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Asymptotic modelling and design of some microlayered functionally graded heat conductors

Asymptotic modelling and design of some microlayered functionally graded heat conductors The paper presents a new method of modelling for certain microlayered heat conductors. So far the main attention related to the modelling of composite materials with deterministic structure was mainly restricted to the periodic composites (Bensoussan, Lions, and Papanicolaou [1]). The main future of the presented approach is that it can be also applied to the class with a non periodic structure. These structures can by referred to as functionally graded in the direction normal to the interfaces between layers. At the same time the non‐homogenous material structure of the composite is slowly varying in this direction. That is why the obtained model equations have functionally but slowly varying coefficients. Moreover, this equations can by applied for designing functionally graded heat conductors with given a priori class of temperature fields. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Zamm-Journal of Applied Mathematics and Mechanics Wiley

Asymptotic modelling and design of some microlayered functionally graded heat conductors

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References (21)

Publisher
Wiley
Copyright
Copyright © 2012 Wiley Subscription Services, Inc., A Wiley Company
ISSN
0044-2267
eISSN
1521-4001
DOI
10.1002/zamm.201100092
Publisher site
See Article on Publisher Site

Abstract

The paper presents a new method of modelling for certain microlayered heat conductors. So far the main attention related to the modelling of composite materials with deterministic structure was mainly restricted to the periodic composites (Bensoussan, Lions, and Papanicolaou [1]). The main future of the presented approach is that it can be also applied to the class with a non periodic structure. These structures can by referred to as functionally graded in the direction normal to the interfaces between layers. At the same time the non‐homogenous material structure of the composite is slowly varying in this direction. That is why the obtained model equations have functionally but slowly varying coefficients. Moreover, this equations can by applied for designing functionally graded heat conductors with given a priori class of temperature fields.

Journal

Zamm-Journal of Applied Mathematics and MechanicsWiley

Published: May 17, 2013

Keywords: ; ;

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