High Performance Plastic Additives Based on Controlled Architecture Material (CAM) Technology, 2003 PLACE Conference & GLOBAL HOT MELT Symposium

The development of methodologies for the synthesis of controlled architecture materials (CAMs) has been an area of intense research over the past decade.2 However, despite the incredible activity in this area, few commercial applications for CAMs have materialized to date. This work describes the successful application of a controlled architecture material as a compatibilizer for a blend of pressure-sensitive adhesives. Analysis of the blend morphology and the resulting adhesive properties demonstrate the efficacy of this compatibilizer. Further application of this technology in other applications is also discussed.

Author: Cernohous, J,. Nelson, J., Marx, R., Hanley, K., Papp, S., Granlund, N.
High Performance Plastic Additives Based on Controlled Archi
High Performance Plastic Additives Based on Controlled Architecture Material (CAM) Technology, 2003 PLACE Conference & GLOBAL HOT MELT Symposium
35.00

New Releases

TAPPI PRESS Catalog eBook 2026


Experience the Power of Publications in 2026


Open


 

Kraft Recovery Boilers, Third Edition  


Sponsored by the Recovery Boiler Program R&D Subcommittee of the American Forest & Paper Association (AF&PA) and published by TAPPI Press.


Purchase


 

Handbook For Pulp and Paper Technologists (The SMOOK Book), Fourth Edition

The best-selling text to introduce the entire technology of pulp and paper manufacture.

Purchase

 

Guidelines for Safe Assessment and Operation of Yankee Dryers  


A project of the Yankee Dryer Safety & Reliability Committee.

Purchase

 

Check our newest additions.


TAPPI Press offers some of the most in-depth resources and references for the forest products and related industries. 

See More

   
 

Available for Purchase – Conference Proceedings


TAPPI maintains a record of key conference papers, presentations, and other conference publications, available for purchase in a variety of formats.

See More