Warpage induced in bi-material specimens: Coefficient of thermal expansion, chemical shrinkage and viscoelastic modulus evolution during cure

Processing of polymer-based composites requires deep knowledge of materials property evolution. In this paper, a comprehensive approach to account for the dimensional and mechanical property changes as function of process parameters is presented. Valid experimental results were obtained to model mat...

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Veröffentlicht in:Composites. Part A, Applied science and manufacturing Applied science and manufacturing, 2006-01, Vol.37 (4), p.565-570
Hauptverfasser: Zarrelli, Mauro, Partridge, Ivana K., D'Amore, A.
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container_title Composites. Part A, Applied science and manufacturing
container_volume 37
creator Zarrelli, Mauro
Partridge, Ivana K.
D'Amore, A.
description Processing of polymer-based composites requires deep knowledge of materials property evolution. In this paper, a comprehensive approach to account for the dimensional and mechanical property changes as function of process parameters is presented. Valid experimental results were obtained to model material properties during the curing process and good agreement has been found with proposed constitutive models. Theoretical predictions of the strip curvature are generated using commercial FEM software (ANSYS) and compared with experimental measurements.
doi_str_mv 10.1016/j.compositesa.2005.05.012
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subjects A. Thermosetting resins
Applied sciences
B. Cure behaviour
Chemical properties
D. Process monitoring
Exact sciences and technology
Polymer industry, paints, wood
Properties and testing
Technology of polymers
Thermo-mechanical analysis
title Warpage induced in bi-material specimens: Coefficient of thermal expansion, chemical shrinkage and viscoelastic modulus evolution during cure
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