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Adhesion Aspects of Polymeric Coatings - download pdf or read online

By Justin C. Bolger (auth.), K. L. Mittal (eds.)

This quantity chronicles the complaints of the Symposium on Adhesion facets of Polymeric Coatings held below the auspices of the Electrochemical Society in Minneapolis, MN, may possibly 10-15, 1981. This occasion used to be cosponsored by way of the Dielectric and Insulation, and Electrothermics and Metallurgy Divisions. Polymeric coatings are used for a couple of reasons, e. g. , ornamental, protecting, useful (as dielectrics or insulators) and a distinct software of polymeric (organic) coatings is their use as lithographic fabrics for making built-in circuit parts. regardless of the aim of the coating, it needs to adhere good to the underlying substrate. So the necessity to less than­ stand the standards which impression adhesion of natural coatings and the how you can reach wanted adhesion is sort of happen. This Symposium used to be designed to collect scientists and technologists attracted to the adhesion elements of polymeric coatings, to supply a discussion board for dialogue of up to date findings, and to supply a chance for cross-pollination of rules. The technical application contained a complete of forty six papers by means of authors from a variety of corners of the area. this system comprised either invited overviews and contributed unique study papers, as this mix is the way to current the kingdom of information of a subject matter. The invited audio system have been chosen in order to characterize greatly range­ ing disciplines and pursuits and so they hailed from a variety of aca­ demic and commercial learn laboratories.

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Stress pattern obtained by illuminating a stressed polyurethane rubber sheet with circularly polarized light, illustrating the effect on stress of fibers at the substrate surface. Although there are many studies in the literature which report lower adhesion to rough surfaces, there are well established examples in various types of system of the opposite effect. The "strength" of an adhesive bond reflects directly or indirectly the energy dissipated in the joint as a whole during failure. The presence of surface roughness can act in various ways to increase this energy dissipation.

By giving the copper short treatment times in the oxidizing solution it was found that the subsequent adhesion built up as the oxide topography developed. The initial sharp rise in the top curve in Figure 8 shows this. Mild abrasion to damage the oxide needles before coating gave rise to lower adhesion, Table VI. The chemical nature of the fibers was changed without major alteration of topography by electrolytic reduction of the oxide to copper before bonding. The adhesion produced, although a little lower, was still high, see the lower curve of Figure 8.

1, Amer. Chern. , Washington, D. , 1964. K. L. Mittal, in "Adhesion Science and Technology", L. H. Lee, Editor, p. 129, Plenum Press, New York, 1975. K. L. Mittal, Polymer Eng. , 17, 467 (1977). A. J. Kinloch, J. ,-r5, 2141 (1980). T. Young, Phil. Trans. Roy. , 95, 65 (1805). R. J. Good, in "Aspects of Adhesion", Vol. 7, D. J. Alner and K. W. Allen, Editors, p. 182, Transcriptor Books, London, 1973. Y. Oh and M. S. Jhon,·J. , 11, 467 (1980). G. C. Benson and K. S. Yun, in "Solid-Gas Interface", Vol.

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