Numerical Investigation of the Gas Flow Temperature on the Thermoforming and Blow-Molding Processes

Author:

Erchiqui F.1,Souli M.2

Affiliation:

1. Univérsité du Québec én Abitibi-Témiscamingue 445 boul. de l'Université, Rouyn-Noranda (Québec), J9X 5E4, Canada,

2. Laboratoire dé Mécanique, Univérsité dé Lille 1 Boulevard Paul Langevin, Cité Sciéntifiqué, 59655 Villeneuve d'Ascq, France

Abstract

In this article, we consider a finite element approach for analysis of the effect of the air flow temperature on the forming of a thin, isotropic, and incompressible thermoplastic membrane. Also, to take into account the enclosed gas volume, responsible for inflation of the thermoplastic membrane, we considered a thermodynamic approach to express external work in terms of a closed volume. The dynamic pressure load is thus deduced from the van der Waals equation of state. The viscoelastic behavior of the K-BKZ model is considered. Numerical validation is performed by comparing the obtained results with the theoretical results for the HDPE grade. Moreover, the effect of the temperature of the gas on the thickness and stress distribution is presented.

Publisher

SAGE Publications

Subject

Materials Chemistry,Polymers and Plastics,Mechanical Engineering,Mechanics of Materials,Ceramics and Composites

Reference23 articles.

1. Industrial thermoforming simulation of automotive fuel tanks

2. Finite element simulation of thermoforming processes for polymer sheets

3. Laroche, D. and Erchiqui, F. (1998). 3D Modelling of the Blow Molding Process in Simulation of Matérials Processing: Theory, Methods and Applications, Huétink and Baaijens (eds), Balkema, Rotterdam, ISBN 90 5410 970 X, pp. 483-488.

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