Plasma Surface Modification of Polymers: Relevance to AdhesionThis book is a collection of invited papers (previously published in special issues of the Journal of Adhesion Science and Technology) written by internationally recognized researchers actively working in the field of plasma surface modification. It provides a current, comprehensive overview of the plasma treatment of polymers. In contrast to plasm |
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Page 22
Figure 8 illustrates the relation between the advancing water contact angle and
the shear strength for the polyphenylene sulphide (RytonŽ R-4)/epoxy system,
following different plasma treatments. Most of these data follow the expected ...
Figure 8 illustrates the relation between the advancing water contact angle and
the shear strength for the polyphenylene sulphide (RytonŽ R-4)/epoxy system,
following different plasma treatments. Most of these data follow the expected ...
Page 23
Typical examples of peel-strength improvements after various plasma treatments.
Control Plasma-treated N/m lb/in N/m lb/in Silicone (red, Durometer 50) 70.1 0.4
3330 19 RTV silicone (D.C. type E) — Very low 403 2.3 Perfluoroalkoxy (PFA) ...
Typical examples of peel-strength improvements after various plasma treatments.
Control Plasma-treated N/m lb/in N/m lb/in Silicone (red, Durometer 50) 70.1 0.4
3330 19 RTV silicone (D.C. type E) — Very low 403 2.3 Perfluoroalkoxy (PFA) ...
Page 25
It has yet to be established whether the maximum bond strength, observed above
, results in part from direct covalent bonding across the interface between the two
laminated surfaces. The acidity of a strongly oxidized surface suggests that ...
It has yet to be established whether the maximum bond strength, observed above
, results in part from direct covalent bonding across the interface between the two
laminated surfaces. The acidity of a strongly oxidized surface suggests that ...
Page 26
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Other editions - View all
Plasma Surface Modification of Polymers: Relevance to Adhesion Kash L Mittal,C. S. Lyons No preview available - 2019 |
Plasma Surface Modification of Polymers: Relevance to Adhesion M. Strobel,C. S. Lyons,Kash L. Mittal No preview available - 1994 |
Common terms and phrases
adhesion adsorption ageing amount analysis appears Appl applications argon atomic bond carbon carboxyl chamber changes Chem chemical compared component composition concentration configuration contact angle contamination crosslinking decrease degradation density dependence derivatization determined discharge discussed effect electron emission energy exposure fibers Figure fluorine formation formed function given greater groups HDPE higher improved incorporation increase indicate intensity interactions interface Kapton film layer LDPE lead less material measured mechanical metal nitrogen observed obtained occur oxidation oxygen parameters peak performed plasma treatment plasma-treated polar polyethylene polymer surface positive present pressure produced properties radicals range ratio reaction reactive reactor reduced region relative reported respectively samples shown similar species spectra spectrum SSIMS sticking coefficient strength structure substrate suggest surface modification Table techniques temperature treated untreated values various washing