
Analysis of Flame Retardancy In Polymer Science
Elsevier (Publisher)
Published on 14. March 2022
Book
Paperback/Softback
470 pages
978-0-12-824045-8 (ISBN)
Description
Analysis of Flame Retardancy in Polymer Science is a scientific/practical book that is conceptualized, designed, and written for students, early-career researchers, and junior engineers to explain the basic principles of fire analysis/characterization methods/methodologies, from flammability, ignition, and fire spread to forced convection and related analyses and to elucidate the mechanisms underlying flame retardancy in both gas and condensed phases followed by correlation between laboratory- and real-scale fire analyses as well as fire analysis from an industrial standpoint. This book is also an indispensable resource for identifying and mounting the latest achievements in fire analysis/characterization methods to frame the effects of fire evaluation strategies to be utilized for research and development. The book also gives a broad description of fire analysis related to different standards and regulations for different applications in different geographic zones.
More details
Language
English
Place of publication
United States
Target group
Professional and scholarly
Primary: Early career researchers and junior engineers in academia and industry dealing with fire testing and standards required for instructions and legislation purposes.
Secondary: Graduate students, professors, engineers, decision-makers in industry working in fire science and engineering as well as materials science; Libraries in universities and industrial institutions, independent institutes, individual research groups and scientists working in the field of flame retardancy
Product notice
Paperback (trade)
Illustrations
Approx. 100 illustrations; Illustrations
Dimensions
Height: 235 mm
Width: 191 mm
Thickness: 24 mm
Weight
806 gr
ISBN-13
978-0-12-824045-8 (9780128240458)
Copyright in bibliographic data and cover images is held by Nielsen Book Services Limited or by the publishers or by their respective licensors: all rights reserved.
Schweitzer Classification
Other editions
Additional editions

Henri Vahabi | Mohammad Reza Saeb | Giulio Malucelli
Analysis of Flame Retardancy In Polymer Science
E-Book
03/2022
Elsevier
€205.00
Available for download
Persons
Prof. Henri Vahabi received his Ph.D. in Materials Science from the University of Montpellier, France, in 2011. He is currently a Full Professor at the University of Lorraine, France. His research is focused on thermal degradation, flame retardancy of thermosets and thermoplastics, and the development of innovative flame-retardant systems. Prof. Vahabi has authored over 170 articles in ISI-indexed journals and has edited four books. Furthermore, he serves as a committee member of the "Fire Group" within the Chemical Society of France and holds the position of Associate Editor for the Polymers from Renewable Resources journal.
Mohammad Reza Saeb is University Professor at the Department of Polymer Technology, Faculty of Chemistry, Gdansk University of Technology. He conceptualizes processing-microstructure-properties-performance interrelationships in polymer blends and nanocomposites. He also visualizes network formation-network degradation correlation in polymer systems by analyzing cure kinetics, thermal degradation kinetics, and flame retardancy. Giulio Malucelli is Professor at the Department of Applied Science and Technology of Politecnico di Torino, Italy. His
research interests include the investigation of structure-property relationships, the fire behavior of textiles modified by
surface-engineered systems, and the design and exploitation of bio-sourced products as effective flame retardants.
Mohammad Reza Saeb is University Professor at the Department of Polymer Technology, Faculty of Chemistry, Gdansk University of Technology. He conceptualizes processing-microstructure-properties-performance interrelationships in polymer blends and nanocomposites. He also visualizes network formation-network degradation correlation in polymer systems by analyzing cure kinetics, thermal degradation kinetics, and flame retardancy. Giulio Malucelli is Professor at the Department of Applied Science and Technology of Politecnico di Torino, Italy. His
research interests include the investigation of structure-property relationships, the fire behavior of textiles modified by
surface-engineered systems, and the design and exploitation of bio-sourced products as effective flame retardants.
Editor
Full Professor, University of Lorraine, Metz, France
University Professor, Department of Polymer Technology, Faculty of Chemistry, Gdansk University of Technology, Poland
Professor, Department of Applied Science and Technology, Politecnico di Torino, Italy
Content
1. Fundamentals: Flammability, ignition, and fire spread in polymers
2. Forced combustion: Cone calorimetry
3. Microscale forced combustion: Pyrolysis-combustion flow calorimetry (PCFC)
4. Evaluation of gas phase: Mechanisms and analyses
5. Evaluation of gas phase: Smoke and toxicity analysis
6. Evaluation of condensed phase: Char/residue analysis
7. Analysis of fire resistance of materials
8. Characterization of high-temperature polymers for extreme environments
9. Correlation between laboratory- and real-scale fire analyses
10. Fire analysis tests from industrial point of view
2. Forced combustion: Cone calorimetry
3. Microscale forced combustion: Pyrolysis-combustion flow calorimetry (PCFC)
4. Evaluation of gas phase: Mechanisms and analyses
5. Evaluation of gas phase: Smoke and toxicity analysis
6. Evaluation of condensed phase: Char/residue analysis
7. Analysis of fire resistance of materials
8. Characterization of high-temperature polymers for extreme environments
9. Correlation between laboratory- and real-scale fire analyses
10. Fire analysis tests from industrial point of view