Reactions and Mechanisms in Thermal Analysis of Advanced Materials

Reactions and Mechanisms in Thermal Analysis of Advanced Materials

Author: Atul Tiwari

Publisher: John Wiley & Sons

Published: 2015-08-06

Total Pages: 612

ISBN-13: 1119117690

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Strong bonds form stronger materials. For this reason, the investigation on thermal degradation of materials is a significantly important area in research and development activities. The analysis of thermal stability can be used to assess the behavior of materials in the aggressive environmental conditions, which in turn provides valuable information about the service life span of the materiel. Unlike other books published so far that have focused on either the fundamentals of thermal analysis or the degradation pattern of the materials, this book is specifically on the mechanism of degradation of materials. The mechanism of rapturing of chemical bonds as a result of exposure to high-temperature environment is difficult to study and resulting mechanistic pathway hard to establish. Limited information is available on this subject in the published literatures and difficult to excavate. Chapters in this book are contributed by the experts working on thermal degradation and analysis of the wide variety of advanced and traditional materials. Each chapter discusses the material, its possible application, behavior of chemical entities when exposed to high-temperature environment and mode and the mechanistic route of its decomposition. Such information is crucial while selecting the chemical ingredients during the synthesis or development of new materials technology.


Reactions and Mechanisms in Thermal Analysis of Advanced Materials

Reactions and Mechanisms in Thermal Analysis of Advanced Materials

Author: Atul Tiwari

Publisher: John Wiley & Sons

Published: 2015-07-29

Total Pages: 660

ISBN-13: 1119117704

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Strong bonds form stronger materials. For this reason, the investigation on thermal degradation of materials is a significantly important area in research and development activities. The analysis of thermal stability can be used to assess the behavior of materials in the aggressive environmental conditions, which in turn provides valuable information about the service life span of the materiel. Unlike other books published so far that have focused on either the fundamentals of thermal analysis or the degradation pattern of the materials, this book is specifically on the mechanism of degradation of materials. The mechanism of rapturing of chemical bonds as a result of exposure to high-temperature environment is difficult to study and resulting mechanistic pathway hard to establish. Limited information is available on this subject in the published literatures and difficult to excavate. Chapters in this book are contributed by the experts working on thermal degradation and analysis of the wide variety of advanced and traditional materials. Each chapter discusses the material, its possible application, behavior of chemical entities when exposed to high-temperature environment and mode and the mechanistic route of its decomposition. Such information is crucial while selecting the chemical ingredients during the synthesis or development of new materials technology.


Thermal Analysis Kinetics for Understanding Materials Behavior

Thermal Analysis Kinetics for Understanding Materials Behavior

Author: Sergey Vyazovkin

Publisher: MDPI

Published: 2020-12-29

Total Pages: 230

ISBN-13: 3039365592

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Changing the temperature of a substance can stimulate dramatic changes of its state. These changes can be intermolecular (physical) and intramolecular (chemical) in nature. Physical changes occur without breaking intramolecular bonds, and lead to transitions between the four major phases: gas, liquid, crystal, and glass. Chemical changes are associated with chemical reactions that originate from breaking intramolecular bonds. Phase transitions as well as chemical reactions occur at finite rates. Measuring the rates of processes is the realm of kinetics. The kinetics of thermally stimulated processes is routinely measured using thermal analysis techniques such as differential scanning calorimetry (DSC) and thermogravimetric analysis (TGA). Knowing the process rates and their dependence on temperature is of vital importance for understanding the behavior of materials exposed to variations in temperature. In recent years, thermal analysis kinetics has made significant progress by developing computational tools for reliable kinetic analysis. It has also expanded its traditional application area to newly developed nano- and biomaterials. This Special Issue is a series of papers that reflect recent developments in the field and highlight the essential role of thermal analysis kinetics in understanding the processes responsible for the thermal behavior of various materials.


Future Material Research and Industry Application

Future Material Research and Industry Application

Author: Khine Soe Thaung

Publisher: Trans Tech Publications Ltd

Published: 2012-01-24

Total Pages: 1666

ISBN-13: 303813760X

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Selected, peer reviewed papers from the 2011 SSITE International Conference on Future Material Research and Industry Application (FMRIA 2011), December 1-2, 2011, Macau, China


Thermal Analysis and Thermodynamic Properties of Solids

Thermal Analysis and Thermodynamic Properties of Solids

Author: Jaroslav Sestak

Publisher: Elsevier

Published: 2021-08-09

Total Pages: 646

ISBN-13: 0323858112

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Thermal Analysis and Thermodynamic Properties of Solids, Second Edition covers foundational principles and recent updates in the field, presenting an authoritative overview of theoretical knowledge and practical applications across several fields. Since the first edition of this book was published, large developments have occurred in the theoretical understanding of—and subsequent ability to assess and apply—principles of thermal analysis. Drawing on the knowledge of its expert author, this second edition provides fascinating insight for both new and experienced students, researchers, and industry professionals whose work is influenced or impacted by thermo analysis principles and tools. Part 1 provides a detailed introduction and guide to theoretical aspects of thermal analysis and the related impact of thermodynamics. Key terminology and concepts, the fundamentals of thermophysical examinations, thermostatics, equilibrium background, thermotics, reaction kinetics and models, thermokinetics and the exploitation of fractals are all discussed. Part 2 then goes on to discuss practical applications of this theoretical information to topics such as crystallization kinetics and glass states, thermodynamics in superconductor models, and climate change. - Includes fully updated as well as new chapters on kinetic phase diagrams, thermokinetics in DTA experiments, and crystallization kinetics - Discusses the influence of key derivatives such as thermostatics, thermodynamics, thermotics, and thermokinetics - Helps readers understand and describe reaction kinetics in solids, both in terms of simplified descriptions of the reaction mechanism models and averaged descriptions using fractals


Advances in Composites

Advances in Composites

Author: Jinglong Bu

Publisher: Trans Tech Publications Ltd

Published: 2010-10-27

Total Pages: 1874

ISBN-13: 3038135542

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Selected, peer reviewed papers from the 2010 International Conference on Advances in Materials and Manufacturing Processes (ICAMMP 2010), 6-8 November, 2010, Shenzhen, China


Process and Advanced Materials Engineering

Process and Advanced Materials Engineering

Author: Iqbal Ahmed

Publisher: Trans Tech Publications Ltd

Published: 2014-09-12

Total Pages: 952

ISBN-13: 3038265640

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Selected, peer reviewed papers from the 3rd International Conference on Process Engineering and Advanced Materials (ICPEAM 2014), June 3-5, 2014, Kuala Lumpur, Malaysia


Thermal Degradation of Polymeric Materials

Thermal Degradation of Polymeric Materials

Author: Krzysztof Pielichowski

Publisher: iSmithers Rapra Publishing

Published: 2005

Total Pages: 324

ISBN-13: 9781859574980

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Understanding the thermal degradation of polymers is of paramount importance for developing a rational technology of polymer processing and higher-temperature applications. Controlling degradation requires understanding of many different phenomena, including chemical mechanisms, the influence of polymer morphology, the complexities of oxidation chemistry, and the effects of stabilisers, fillers and other additives. This book offers a wealth of information for polymer researchers and processors requiring an understanding of the implications of thermal degradation on material and product performance.