Service Life Prediction of Polymers and Coatings Service Life Prediction of Polymers and Coatings
Plastics Design Library

Service Life Prediction of Polymers and Coatings

Enhanced Methods

Christopher White and Others
    • $279.99
    • $279.99

Publisher Description

Service Life Prediction of Polymers and Coatings: Enhanced Methods focuses on the cutting-edge science behind how plastic and polymer materials are modified by the effects of weathering, offering the latest advances in service life prediction methods. The chapters have been developed by experts based on their contributions as part of the 7th Service Life Prediction Meeting. The volume begins with the premise that it is possible to produce and design life predictions, also looking at how these predictions can be used. Subsequent chapters present new developments in service life prediction, examining the most important considerations in SLP design, timescales, and other major issues.

The book also considers the current state of the field in terms of both accomplishments and areas that require significant research going forward. This is a highly valuable reference for engineers, designers, technicians, scientists and R&D professionals who are looking to develop materials, components or products for outdoor applications across a range of industries. The book also supports academic researchers, scientists and advanced students with an interest in service life, the effects of weathering, material degradation, failure analysis, or sustainability across the fields of plastics engineering, polymer science and materials science.



- Presents novel prediction techniques for plastics and polymers exposed to outdoor weathering

- Provides a consensus roadmap on the scientific barriers related to a validated, predictive model for the response of polymer and plastics to outdoor exposure

- Enables the reader to assess and compare different methods and approaches to service life prediction

GENRE
Professional & Technical
RELEASED
2020
April 28
LANGUAGE
EN
English
LENGTH
320
Pages
PUBLISHER
William Andrew
SELLER
Elsevier Ltd.
SIZE
45.6
MB
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