Spectral Analysis of the Deformation Properties of Polymeric Filaments with an Amorphous-Crystalline Structure

A spectral analysis of the deformation properties of polymeric filaments is performed to obtain a physical interpretation for methods which employ systems analysis and entail computational prediction of the nonlinear hereditary creep of amorphous-crystalline filaments under non-destructive mechanica...

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Veröffentlicht in:Fibre chemistry 2014-05, Vol.46 (1), p.59-62
Hauptverfasser: Makarov, A. G., Demidov, A. V., Pereborova, N. V., Vagner, V. I.
Format: Artikel
Sprache:eng
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Zusammenfassung:A spectral analysis of the deformation properties of polymeric filaments is performed to obtain a physical interpretation for methods which employ systems analysis and entail computational prediction of the nonlinear hereditary creep of amorphous-crystalline filaments under non-destructive mechanical loads. Spectral modeling of the filaments’ deformation properties is done on the basis of the classic generalized Kelvin-Voigt-Meyer model. The normalized memory function which is chosen is interpreted as an integral function that describes particle distribution on the logarithmic scale of lag time. Such a physical interpretation of the memory function is useful for comparatively analyzing the deformation properties of polymer filaments. This article is a continuation of the research that was begun in [ 1 ].
ISSN:0015-0541
1573-8493
DOI:10.1007/s10692-014-9561-1