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The addition of polymers to bitumen allows the modification of
certain physical properties, such as softening point, brittleness
and ductility, of the bitumen. Polymer modified bitumen: Properties
and characterisation provides a valuable and in-depth coverage of
the science and technology of polymer modified bitumen. After an
initial introduction to bitumen and polymer modified bitumen, the
book is divided into two parts. Chapters in part one focus on the
preparation and properties of a range of polymer modified bitumen,
including polymer bitumen emulsions, modification of bitumen with
poly (urethanes), waste rubber and plastic and polypropylene
fibres. Part two addresses the characterisation and properties of
polymer modified bitumen. Chapter topics covered include rheology,
simulated and actual long term ageing studies; the solubility of
bituminous binders in fuels and the use of Fourier transform
infrared spectroscopy to study ageing/oxidation of polymer modified
bitumen. Polymer modified bitumen is an essential reference for
scientists and engineers, from both academia and the civil
engineering and transport industries, interested in the properties
and characterisation of polymer modified bitumen.
Understanding the properties of polymer carbon nanotube (CNT)
composites is the key to these materials finding new applications
in a wide range of industries, including but not limited to
electronics, aerospace and biomedical/bioengineering.
Polymer-carbon nanotube composites provides comprehensive and
in-depth coverage of the preparation, characterisation, properties
and applications of these technologically interesting new
materials. Part one covers the preparation and processing of
composites of thermoplastics with CNTs, with chapters covering
in-situ polymerization, melt processing and CNT surface treatment,
as well as elastomer and thermoset CNT composites. Part two
concentrates on properties and characterization, including chapters
on the quantification of CNT dispersion using microscopy
techniques, and on topics as diverse as thermal degradation of
polymer/CNT composites, the use of rheology, Raman spectroscopy and
multi-scale modelling to study polymer/CNT composites, and CNT
toxicity. In part three, the applications of polymer/CNT composites
are reviewed, with chapters on specific applications such as in
fibres and cables, bioengineering applications and conductive
polymer CNT composites for sensing. With its distinguished editors
and international team of contributors, Polymer-carbon nanotube
composites is an essential reference for scientists, engineers and
designers in high-tech industry and academia with an interest in
polymer nanotechnology and nanocomposites.
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