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Structural variation of the building blocks, i.e. soft, hard segment and chain extender structure on the phase mixing characteristics during cure in polyether based moisture-cured polyurethanes (MCPUs) has been investigated.
Relaxation modulus and film shrinkage are measured simultaneously during cure.
The attachment of polyacrylates during cure can also be detected.
Based on experiences from first trials another approach is taken to align both tubes during cure.
The rheological properties of epoxy matrices and adhesives during cure are modelled in this work.
As a result, stresses developed during cure and subsequent temperature changes may result in cracking.
Cure dependent material response includes thermoset resin hardening and volumetric shrinkage during cure.
The lamina constitutive model was proposed to include cure induced shrinkage and composite hardening during cure.
CRM also enables the accurate determination of the chemical shrinkage of the epoxy matrix during cure.
These properties depend strongly on the resin network topology formed during cure.
The model is shown to accurately predict the unsteady temperature distribution through the thickness during cure.
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