Modeling and Simulation of Crystallization Processes in Polymer Melt Flows

CHF 39.35
Auf Lager
SKU
2GT4HF2B4I5
Stock 1 Verfügbar
Geliefert zwischen Mo., 23.02.2026 und Di., 24.02.2026

Details

The last stage of many manufacturing processes used in polymer processing industry are primary forming processes such as extrusion or injection molding. If melts of semicrystalline plastics are subjected to such processes, temperature control opens up the possibility of influencing solid state properties. This concerns those that depend on crystallinity, as it is possible to enhance crystallization by slow cooling or to suppress it by quenching. However, during the forming process the melt rarely rests, so that solidification processes in flows occur. Those complex processes can only be examined in detail by numerical simulation. The present work contributes to this by developing a novel modeling approach for isotactic Polypropylene, detailed presentation and solution of problems in modeling and numerics, as well as exemplary studies for the calculation of a profile extrusion and injection molding process. Detailed calorimetric and rheometric investigations of the solidification behavior and a consideration of molecular processes during crystallization serve as a fundament for modeling. The crystallization model is based on the derivation of the crystallization progress from data of a dynamic scanning calorimetry over a large range of cooling rates. It enables the consideration of suppression of crystallization and a local determination of the crystallinity. The flow behavior of the melt is described by a thermorheological, generalized Maxwell model with the exponential expansion of Phan-Thien and Tanner. Solidified regions are modeled using an adequately parameterized Newtonian law. The numerical realization is done by implementing the modeling approaches in the open source CFD library OpenFOAM. To ensure reliability of the solver, the log-conformation reformulation, both side diffusion stabilization and block-coupled pressure-velocity coupling are used. Detailed studies for elementary static and dynamic problems verify the method and investigate the interaction of all modeling approaches. Parameter studies for realistic profile extrusion and injection molding configurations in 2D and 3D results show examples of application. The results show that the developed method allows to predict the interaction between melt and solidified domains and the crystallinity in the solid.

Klappentext

Describing crystallization processes in polymer melt flows involves many effects. Objective of this work is to capture a selection in a simulation environment, for a certain material, starting from executing experiments on. This means aspects of experimental investigations, modeling and special numerical methods used to create a simulation environment will be highlighted. Because this involves many fields, works covering all aspects are rare1. It is intended to contribute such a work by the publication of this thesis.

Weitere Informationen

  • Allgemeine Informationen
    • GTIN 09783737608770
    • Sprache Deutsch
    • Genre Maschinenbau & Fertigungstechnik
    • Lesemotiv Verstehen
    • Größe H210mm x B148mm x T9mm
    • Jahr 2020
    • EAN 9783737608770
    • Format Kartonierter Einband (Kt)
    • ISBN 978-3-7376-0877-0
    • Titel Modeling and Simulation of Crystallization Processes in Polymer Melt Flows
    • Autor Stefan Descher
    • Gewicht 216g
    • Herausgeber kassel university press
    • Anzahl Seiten 149

Bewertungen

Schreiben Sie eine Bewertung
Nur registrierte Benutzer können Bewertungen schreiben. Bitte loggen Sie sich ein oder erstellen Sie ein Konto.
Made with ♥ in Switzerland | ©2025 Avento by Gametime AG
Gametime AG | Hohlstrasse 216 | 8004 Zürich | Schweiz | UID: CHE-112.967.470
Kundenservice: customerservice@avento.shop | Tel: +41 44 248 38 38