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Thickness Optimisation of Textiles Subjected to Heat and Mass Transport during Ironing

Thickness Optimisation of Textiles Subjected to Heat and Mass Transport during Ironing Abstract Let us next analyse the coupled problem during ironing of textiles, that is, the heat is transported with mass whereas the mass transport with heat is negligible. It is necessary to define both physical and mathematical models. Introducing two-phase system of mass sorption by fibres, the transport equations are introduced and accompanied by the set of boundary and initial conditions. Optimisation of material thickness during ironing is gradient oriented. The first-order sensitivity of an arbitrary objective functional is analysed and included in optimisation procedure. Numerical example is the thickness optimisation of different textile materials in ironing device. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Autex Research Journal de Gruyter

Thickness Optimisation of Textiles Subjected to Heat and Mass Transport during Ironing

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Publisher
de Gruyter
Copyright
Copyright © 2016 by the
ISSN
2300-0929
eISSN
2300-0929
DOI
10.1515/aut-2015-0035
Publisher site
See Article on Publisher Site

Abstract

Abstract Let us next analyse the coupled problem during ironing of textiles, that is, the heat is transported with mass whereas the mass transport with heat is negligible. It is necessary to define both physical and mathematical models. Introducing two-phase system of mass sorption by fibres, the transport equations are introduced and accompanied by the set of boundary and initial conditions. Optimisation of material thickness during ironing is gradient oriented. The first-order sensitivity of an arbitrary objective functional is analysed and included in optimisation procedure. Numerical example is the thickness optimisation of different textile materials in ironing device.

Journal

Autex Research Journalde Gruyter

Published: Sep 1, 2016

References