Published 1988 | Version v1
Book

Plasma treatment of polymers for improved adhesion

Creators

  • 1. Sandia National Labs., Albuquerque, NM (USA)

Description

A variety of plasma treatments of polymer sufaces for improved adhesion are reviewed: noble and reactive has treatment of fluoropolymers; noble and reactive treatment of polyolefins, and plasma-induced amination of polymer fibers. The plasma induced surface chemical and morphological changer are discussed, as are the mechanisms of adhersion to polymeric adhesives, particularly epoxy. Noble has plasma eching of fluoropolymers produces a partially defluorinated, textured surface. The mechanical interlocking of this textured surface is the primary cause of improved adhsion to epoxy. Reactive has plasma also induce defluorination, but oxygen containing gases cause continual ablation of the fluoropolymer surface. Noble and reactive gas (except for hydrogen) etching of polyolefins results in surface oxidation and imrprove adhesion via hydrogen bonding of these exygen containing groups across the interface. The introduction of amine groups to a polymer surface by ammonia or amine plasma treatment generally results in improved adhesion to epoxy. However, amine-epoxy ring interactions can be severely effected by steric factors due to chemical group surrounding the amine

Additional details

Publishing Information

Publisher
Materials Research Society.
Imprint Place
New York, NY (USA)
ISBN
0-931837-89-9
Imprint Title
Adhesion in solids
Imprint Pagination
312 p.
Series
Materials Research Society symposium proceedings. Volume 119.
Journal Page Range
p. 255-264.

Conference

Title
Interfacial structure, properties and designs in solids.
Dates
5-7 Apr 1988.
Place
Reno, NV (USA).

Optional Information

Secondary number(s)
CONF-8804117--.