Effect of Wetting Liquids on the Strength of Adhesion of Viscoelastic Material
- 1 March 1972
- journal article
- research article
- Published by Taylor & Francis in The Journal of Adhesion
- Vol. 3 (4), 281-294
- https://doi.org/10.1080/00218467208072199
Abstract
The effect of a variety of wetting liquids on the resistance to peeling separation for a lightly crosslinked rubbery adhesive in contact with a Mylar substrate has been studied over a wide range of peeling rates and at two temperatures. Although the magnitude of the peel strength is much greater than the thermodynamic work of detachment, it is reduced by alcohols and alcohol/water mixtures in good agreement with calculated reduction factors. It is concluded that the measured strength is a product of two terms: the thermodynamic work, and a numerical factor, generally large, denoting inefficiency. The latter term is strongly dependent on peel rate and temperature for viscoelastic adhesives. Two anomalies are pointed out: particularly low adhesion is observed at low rates of peel for certain liquids, attributed to swelling of the adhesive, and smaller effects are found for some other liquids than predicted.Keywords
This publication has 11 references indexed in Scilit:
- Some thermodynamic aspects of polymer adhesionJournal of Applied Polymer Science, 1970
- Forces involved in the adhesive processJournal of Colloid and Interface Science, 1970
- Estimation of the surface free energy of polymersJournal of Applied Polymer Science, 1969
- Adhesion of viscoelastic materials to rigid substratesProceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences, 1969
- Peel Adhesion: Influence of Surface Energies and Adhesive RheologyThe Journal of Adhesion, 1969
- Kinetics of Wetting of Surfaces by Polymer MeltsJournal of Applied Physics, 1966
- A THEORY FOR ESTIMATION OF SURFACE AND INTERFACIAL ENERGIES. III. ESTIMATION OF SURFACE ENERGIES OF SOLIDS FROM CONTACT ANGLE DATAThe Journal of Physical Chemistry, 1960
- Dependence of the ultimate properties of a GR‐S rubber on strain rate and temperatureJournal of Polymer Science, 1958
- A Theory for the Estimation of Surface and Interfacial Energies. I. Derivation and Application to Interfacial TensionThe Journal of Physical Chemistry, 1957
- Tensile Strength of Plastics above the Glass TemperatureJournal of Applied Physics, 1955