Search NASA⌕ Search

NASA NTRS · 19900011882

Process for crosslinking methylene-containing aromatic polymers with ionizing radiation

Abstract

A process for crosslinking aromatic polymers containing radiation-sensitive methylene groups (-CH2-) by exposing the polymers to ionizing radiation thereby causing crosslinking of the polymers through the methylene groups is described. Crosslinked polymers are resistant to most organic solvents such as acetone, alcohols, hydrocarbons, methylene, chloride, chloroform, and other halogenated hydrocarbons, to common fuels and to hydraulic fluids in contrast to readily soluble uncrosslinked polymers. In addition, the degree of crosslinking of the polymers depends upon the percentage of the connecting groups which are methylene which ranges from 5 to 50 pct and preferably from 25 to 50 pct of the connecting groups, and is also controlled by the level of irradiation which ranges from 25 to 1000 Mrads and preferably from 25 to 250 Mrads. The temperature of the reaction conditions ranges from 25 to 200 C and preferably at or slightly above the glass transition temperature of the polymer. The crosslinked polymers are generally more resistant to degradation at elevated temperatures such as greater than 150 C, have a reduced tendency to creep under load, and show no significant embrittlement of parts fabricated from the polymers.

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Bell, Vernon L., Havens, Stephen J.. 1990-03-20. Process for crosslinking methylene-containing aromatic polymers with ionizing radiation. https://ntrs.nasa.gov/citations/19900011882

Cite the original work for its findings. Save a collection to share your selection of sources.