High Performance Polymers (2nd Ed.)
Plastics Design Library Series

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Language: English

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440 p. · 21.4x27.6 cm · Hardback

Approaching the material from a chemistry and engineering perspective, High Performance Polymers presents the most reliable and current data available about state-of-the-art polymerization, fabrication, and application methods of high performance industrial polymers.

Chapters are arranged according to the chemical constitution of the individual classes, beginning with main chain carbon-carbon polymers and leading to ether-containing, sulfur-containing, and so on. Each chapter follows an easily readable template, provides a brief overview and history of the polymer, and continues on to such sub-topics as monomers; polymerization and fabrication; properties; fabrication methods; special additives; applications; suppliers and commercial grades; safety; and environmental impact and recycling.

High Performance Polymers brings a wealth of up-to-date, high performance polymer data to you library, in a format that allows for either a fast fact-check or more detailed study. In this new edition the data has been fully updated to reflect all developments since 2008, particularly in the topics of monomers, synthesis of polymers, special polymer types, and fields of application.

1 Carbazole Polymers 2 Poly(p-xylylene)s 3 Poly(arylene-vinylene)s 4 Poly(phenylene ether)s 5 Poly(phenylene sul de) 6 Poly(aryl ether ketone)s 7 Poly(arylene ether sulfone)s 8 Poly(arylene ether nitrile)s 9 Triazole Polymers 10 Poly(oxadiazole)s 11 Poly(naphthalates) 12 Partially Aromatic Poly(amide)s 13 Aramids 14 Poly(amide-imide)s 15 Poly(imide)s 16 Poly(benzimidazole)sTradenames Acronyms Chemicals
Dr. Fink is a Professor of Macromolecular Chemistry at Montanuniversit Leoben, Austria.
  • Presents the state-of-the-art polymerization, fabrication and application methods of high performance industrial polymers
  • Provides fundamental information for practicing engineers working in industries that develop advanced applications (including electronics, automotive and medical)
  • Discusses environmental impact and recycling of polymers