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Understanding chemical and solid materials and their properties and
behavior is fundamental to chemical and engineering design. With
some of the world's leading experts describing their most recent
research, this book describes the procedures for material selection
and design to ensure that the most suitable materials for a given
application are identified from the full range of materials,
chemicals, and section shapes available. Several case studies have
been developed to further illustrate procedures and to add to the
practical implementation of the text.
This new volume reviews recent academic and technological
developments behind new engineered modified nanotextile materials.
The developments in textiles using nanotechnology give ordinary
materials improved properties, such as better water resistance,
enhanced moisture and odor reduction, increased strength and
elasticity, and resistance to bacteria, among other improvements.
The research reported in this book presents state-of-the-art
technology in modern materials with an emphasis on the rapidly
growing technologies in textile engineering. Several innovative
applications for different materials are described in considerable
detail with emphasis on the experimental data that supports these
new applications. From nano-fibers to chemical materials, creative
modifications concerning new nanocomposites are described that
could one day become commonplace. The book covers a host of topics
in this area, including the design of new textile products,
moisture and heat transfer in clothing, developments in
electrospinning, new applications, nanotextile and tissue
engineering from a biological perspective, and more. The book is
intended for researchers and those interested in future
developments in mechanical and physicochemical characteristics of
modified nanotextile materials and polymer blends. The book will
also be a useful tool for students and researchers, providing
helpful insights into new evolving research areas in nanostructured
polymer blends and composites in textiles.
This new volume reviews recent academic and technological
developments behind new engineered modified nanotextile materials.
The developments in textiles using nanotechnology give ordinary
materials improved properties, such as better water resistance,
enhanced moisture and odor reduction, increased strength and
elasticity, and resistance to bacteria, among other improvements.
The research reported in this book presents state-of-the-art
technology in modern materials with an emphasis on the rapidly
growing technologies in textile engineering. Several innovative
applications for different materials are described in considerable
detail with emphasis on the experimental data that supports these
new applications. From nano-fibers to chemical materials, creative
modifications concerning new nanocomposites are described that
could one day become commonplace. The book covers a host of topics
in this area, including the design of new textile products,
moisture and heat transfer in clothing, developments in
electrospinning, new applications, nanotextile and tissue
engineering from a biological perspective, and more. The book is
intended for researchers and those interested in future
developments in mechanical and physicochemical characteristics of
modified nanotextile materials and polymer blends. The book will
also be a useful tool for students and researchers, providing
helpful insights into new evolving research areas in nanostructured
polymer blends and composites in textiles.
Understanding chemical and solid materials and their properties and
behavior is fundamental to chemical and engineering design. With
some of the world's leading experts describing their most recent
research, this book describes the procedures for material selection
and design to ensure that the most suitable materials for a given
application are identified from the full range of materials,
chemicals, and section shapes available. Several case studies have
been developed to further illustrate procedures and to add to the
practical implementation of the text.
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