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Academic researchers who are working on the development of
composite materials for ballistic protection need a deeper
understanding on the theory of material behavior during ballistic
impact. Those working in industry also need to select proper
composite constituents, to achieve their desired characteristics to
make functional products. Composite Solutions for Ballistics covers
the different aspects of ballistic protection, its different levels
and the materials and structures used for this purpose. The
emphasis in the book is on the application and use of composite
materials for ballistic protection. The chapters provide detailed
information on the various types of impact events and the
complexity of materials to respond to those events. The
characteristics of ballistic composites and modelling and
simulation results will enable the reader to better understand
impact mechanisms according to the theory of dynamic material
behavior. A complete description of testing conditions is also
given that includes sensors and high-speed devices to monitor
ballistic events. The book includes detailed approaches and schemes
that can be implemented in academic research into solutions for
ballistic protection in both theoretical and experimental fields,
to find solutions for existing and next generation threats. The
book will be an essential reference resource for materials
scientists and engineers, and academic and industrial researchers
working in composite materials and textiles for ballistic
protection, as well as postgraduate students on materials science,
textiles and mechanical engineering courses.
The book is primarily focused on natural plant (lignocellulosic)
fibers as sustainable reinforcement material for green composites.
It begins with a brief introduction to common plant-based
reinforcements, their extraction techniques, the structure of plant
fibers, and describes novel fibers extracted from fruit, seeds,
leaf, bast, and agricultural waste. The book then focuses on the
application of these fibers as reinforcements for composite
materials, covering reinforcement and composite fabrication
techniques, as well as their performance evaluation. Overall, the
book provides a unique and comprehensive look at lignocellulosic
fibers for use in green composites, appealing to both researchers
in the area of sustainable materials and industry professionals and
entrepreneurs interested in their utilization in value-added
composite products.
The properties of woven and knitted fabrics differ largely due to
the path yarn follows in the fabric structure. This path determines
the fabric's physical properties, mechanical properties, and
appearance. A slight variation to the design may result in entirely
different properties for the fabric. Structural Textile Design
provides detailed insight on different types of designs used for
the production of woven and knitted fabrics, highlighting the
effect design has on a fabric's properties and applications. With
focus on the techniques used to draw designs and produce them on
weaving and knitting machines, this book will be of great interest
to textile engineers, professionals and graduate students in
textile technology and manufacturing.
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