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Handbook of Thermal Analysis and Calorimetry: Recent Advances,
Techniques and Applications, Volume Six, Second Edition, presents
the latest in a series that has been well received by the thermal
analysis and calorimetry community. This volume covers recent
advances in techniques and applications that complement the earlier
volumes. There has been tremendous progress in the field in recent
years, and this book puts together the most high-impact topics
selected for their popularity by new editors Sergey Vyazovkin,
Nobuyoshi Koga and Christoph Schick-all editors of Thermochimica
Acta. Among the important new techniques covered are biomass
conversion; sustainable polymers; polymer nanocompsoties;
nonmetallic glasses; phase change materials; propellants and
explosives; applications to pharmaceuticals; processes in ceramics,
metals, and alloys; ionic liquids; fast-scanning calorimetry, and
more.
In the past decades, the scan rate range of calorimeters has been
extended tremendously at the high end, from approximately 10 up to
10 000 000 DegreesC/s and more. The combination of various
calorimeters and the newly-developed Fast Scanning Calorimeters
(FSC) now span 11 orders of magnitude, by which many processes can
be mimicked according to the time scale(s) of chemical and physical
transitions occurring during cooling, heating and isothermal stays
in case heat is exchanged. This not only opens new areas of
research on polymers, metals, pharmaceuticals and all kinds of
substances with respect to glass transition, crystallization and
melting phenomena, it also enables in-depth study of metastability
and reorganization of samples on an 1 to 1000 ng scale. In
addition, FSC will become a crucial tool for understanding and
optimization of processing methods at high speeds like injection
molding. The book resembles the state-of-the art in Thermal
Analysis & Calorimetry and is an excellent starting point for
both experts and newcomers in the field.
In the past decades, the scan rate range of calorimeters has been
extended tremendously at the high end, from approximately 10 up to
10 000 000 DegreesC/s and more. The combination of various
calorimeters and the newly-developed Fast Scanning Calorimeters
(FSC) now span 11 orders of magnitude, by which many processes can
be mimicked according to the time scale(s) of chemical and physical
transitions occurring during cooling, heating and isothermal stays
in case heat is exchanged. This not only opens new areas of
research on polymers, metals, pharmaceuticals and all kinds of
substances with respect to glass transition, crystallization and
melting phenomena, it also enables in-depth study of metastability
and reorganization of samples on an 1 to 1000 ng scale. In
addition, FSC will become a crucial tool for understanding and
optimization of processing methods at high speeds like injection
molding. The book resembles the state-of-the art in Thermal
Analysis & Calorimetry and is an excellent starting point for
both experts and newcomers in the field.
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