High-temperature properties and applications of polymeric materials
Author(s)
Bibliographic Information
High-temperature properties and applications of polymeric materials
(ACS symposium series, 603)
American Chemical Society, 1995
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"Developed from a symposium sponsored by the Division of Polymeric Materials: Science and Engineering, Inc., at the 207th National Meeting of the American Chemical Society, San Diego, California, March 13-17, 1994."
Includes bibliographical references and index
Description and Table of Contents
Description
Presents information on the synthesis, processing, and characterization of polymers and polymer composites for high performance materials needing to withstand high temperatures. Discusses the synthesis and properties of new thermally stable polymers. Includes new approaches for modelling material processing and decomposition. Provides a broad perspective by examining the science and engineering aspects of polymeric materials for high-temperature applications.
Table of Contents
- High-Temperature Properties and Applications of Polymeric Materials: An Overview
- Thermophysical Properties of Epoxy and Phenolic Composites
- High-Temperature Stability of Silicone Polymers and Related Pressure-Sensitive Adhesives
- Testing Materials at Elevated Temperatures Using Moire Interferometry
- Positron Annihilation Lifetime Spectroscopy To Probe Free- Volume Effects in High-Temperature Polymers and Composites
- Some Models of Material Behavior During Injection Molding
- Advanced Modeling of the Generation and Movement of Gases Within a Decomposing Polymer Composite
- The Application of Supercritical Fluid Technology to High-Performance Polymers
- Degradation Kinetics of High-Performance Polymers and Their Composites
- Monte Carlo Simulation of Polymer High-Temperature Degradation and Fracture
- Novel High-Performance Thermosetting Polymer Matrix Material Systems
- Properties and Potential Applications of Poly(arylene ether benzimidazole)s
- Synthesis and Characterization of Porous Polyimide Films for Dielectric Applications
- Synthesis and Characterization of Melt-Processible, High- Molecular-Weight Poly(amide-imides)
- Metal Salt-Polymer Composites: Complexation of Metal Salts with the Phosphorus-Oxygen Bond in Poly(arylene ether phosphine oxide)s
- Refractive Indices of Aromatic Polyimides
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