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Abstract Four model plasma coatings obtained with selected parameters and precursors (acetylene, acrylic acid, and maleic anhydride) were developed for the preparation of adhesive joints of a metal/elastomer assembly. One of these layers, pulsed wave (PW), is thin and highly functionalized, while another continuous wave (CW) coated with the same thickness is less functionalized but crosslinked. The other two layers (CW × 2, CW + PW), twice as thick compared with PW and CW, show the same chemical criteria. The adhesion strength of prepared assemblies is increasing, but mostly depends on the precursor type. Moreover, such model layers allow to study the adhesion mechanism between the metal and the elastomer. The thermodynamic adhesion, that is, surface energy closer to the elastomer one, appears to prevail.
Ji et al. (Thu,) studied this question.
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