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The book highlights the recent research developments in
biocomposite design, mechanical performance and utility. It
discusses innovative experimental approaches along with mechanical
designs and manufacturing aspects of various fibrous polymer matrix
composites and presents examples of the synthesis and development
of biocomposites and their applications. It is useful for
researchers developing biocomposite materials for biomedical and
environmental applications.
This book covers current advances and practices in machining
fibre-reinforced polymer composites under various conventional and
nonconventional processes. It presents recent research and
practices for effective and efficient machining of difficult-to-cut
material, providing the technological 'know-how' on
delamination-free of drilling, milling, trimming, and other cutting
processes on fibre-reinforced polymer composites. It also guides
the reader on the selection of optimum machining parameters, tool
materials, as well as tool geometry. This book is of interest to
academicians, students, researchers, practitioners, and
industrialists working in aerospace, automotive, marine, and
construction industries.
This book covers the current advances and practices in tribological
applications of composite materials under various processes,
presenting the development, characterization, and morphological
properties of composite materials in tribological applications. It
covers a wide range of subjects, extending from fundamental
research on the tribological characteristics of various multi-phase
materials to the final applications of composites in wear loaded,
technical components. It brings together contributions from
researchers who discusses innovative experimental approaches and
analytical techniques, creating a reference with comprehensive
coverage of modern research techniques and the potential
application of tribological composites in biomedical, aerospace,
automotive, marines and construction industries. This volume will
be of interest to material science researchers working in both
industry and academia
This book discusses the impact of different range of velocities
(low, high, ballistic and hyper-velocity impact) on composites.
Presented through experimental and numerical analysis, the book
goes beyond impact event analysis and also covers the after-impact
phenomena, including flexural and compression and damage analysis
through destructive and non-destructive evaluations. The analyses
presented from either experimental or numerical simulations are
composed of micro and macrographs images, illustrations, tables and
figures with inclusive discussions and supportive evidences from
recent studies on composites. This book also highlights the
potential applications of composites through the lens of their
impact properties, in different industries such as automotive and
defence applications. Generally, this book benefits wider range of
readers including the industrial practitioners, researchers,
lecturer and students, who are working in the fields related to
impact and damage analysis, including the structural health
monitoring of composites, either experimentally or numerically.
Addresses the composites development process including damage
detection and repair of composites for aerospace application Covers
research on multi-scale process modelling, material modelling,
self-healing, repairing and their analysis Concentrates on repair
of composites for weight sensitive applications in automobile and
aerospace areas Analyses materials processing and materials design
perspective Details composite joints, their failure, and operation
of aircraft component under various environments
This book bridges the gap between theoretical concepts and their
implementations, especially for the high-performance
structures/components related to advanced composite materials. This
work focuses on the prediction of various structural responses such
as deformations, natural frequencies etc. of advanced composites
under complex environments and/or loading conditions. In addition,
it discusses micro-mechanical material modeling of various advanced
composite materials that involve different structures ranging from
basic to advanced, such as beams, flat and curved panels, shells,
skewed, corrugated, and other materials, as well as various
solution techniques via analytical, semi-analytical, and numerical
approaches. This book: Covers micro-mechanical material modeling of
advanced composite materials Describes constitutive models of
different composite materials and kinematic models of different
structural configuration Discusses pertinent analytical,
semi-analytical, and numerical techniques Focusses on structural
responses relating to deformations, natural frequencies, and
critical loads under complex environments Presents actual
demonstrations of theoretical concepts as applied to real examples
using Ansys APDL scripts This book is aimed at researchers,
professionals, and graduate students in mechanical engineering,
material science, material engineering, structural engineering,
aerospace engineering, and composite materials.
Applications of composite materials and composite coatings have
been increasing in the field of automobile and aerospace industries
due to the versatility in their properties. Present book
comprehensively reviews the composite materials and coatings with a
focus on the mechanical and tribology applications. It covers type
of fibres (natural and synthetic), reinforcements and their
selection, matrix, and technologies used to produce composite
materials. Various sections cover basics and associated failures of
composites, strengthening mechanisms and background theories,
composite manufacturing technologies, mechanical and tribology
properties of past and currently used composites. Features:- Covers
different types of fibers, reinforcements, matrix, and technologies
used to produce composite materials. Details the tribology behavior
of different novel composite coatings fabricated using different
coating techniques. Reviews research on wear behavior of composite
materials and coatings. Discusses reinforcement behavior with
respect to the different processing routes. Illustrates rule of
mixtures, failures, theories behind the strengthening mechanism.
This book aims at professionals, graduate students and researchers
in mechanical engineering, design engineering, composite materials,
composite coatings, tribology, automobile, and aircraft.
The proposed book focusses on the theme of failure of polymer
composites, focusing on vital aspects of enhancing failure
resistance, constituents and repair including associated
complexities. It discusses characterization and experimentation of
the composites under loading with respect to the specific
environment and applications. Further, it includes topics as green
composites, advanced materials and composite joint failure,
buckling failure, and fiber-metal composite failure. It explains
preparation, applications of composites for weight sensitive
applications, leading to potential applications and formulations,
fabrication of polymer products based on bio-resources. Provides
exhaustive understanding of failure and fatigue of polymer
composites Covers the failure of fiber reinforced polymer
composites, composite joint failure, fiber-metal composite, and
laminate failure Discusses how to enhance the resistance against
failure of the polymer composites Provides input to industry
related and academic orientated research problems Represents an
organized perspective and analysis of materials processing,
material design, and their failure under loading This book is aimed
at researchers, graduate students in composites, fiber
reinforcement, failure mechanism, materials science, and mechanical
engineering.
This book discusses the impact of different range of velocities
(low, high, ballistic and hyper-velocity impact) on composites.
Presented through experimental and numerical analysis, the book
goes beyond impact event analysis and also covers the after-impact
phenomena, including flexural and compression and damage analysis
through destructive and non-destructive evaluations. The analyses
presented from either experimental or numerical simulations are
composed of micro and macrographs images, illustrations, tables and
figures with inclusive discussions and supportive evidences from
recent studies on composites. This book also highlights the
potential applications of composites through the lens of their
impact properties, in different industries such as automotive and
defence applications. Generally, this book benefits wider range of
readers including the industrial practitioners, researchers,
lecturer and students, who are working in the fields related to
impact and damage analysis, including the structural health
monitoring of composites, either experimentally or numerically.
The book highlights the recent research developments in
biocomposite design, mechanical performance and utility. It
discusses innovative experimental approaches along with mechanical
designs and manufacturing aspects of various fibrous polymer matrix
composites and presents examples of the synthesis and development
of biocomposites and their applications. It is useful for
researchers developing biocomposite materials for biomedical and
environmental applications.
This book covers the current advances and practices in tribological
applications of composite materials under various processes,
presenting the development, characterization, and morphological
properties of composite materials in tribological applications. It
covers a wide range of subjects, extending from fundamental
research on the tribological characteristics of various multi-phase
materials to the final applications of composites in wear loaded,
technical components. It brings together contributions from
researchers who discusses innovative experimental approaches and
analytical techniques, creating a reference with comprehensive
coverage of modern research techniques and the potential
application of tribological composites in biomedical, aerospace,
automotive, marines and construction industries. This volume will
be of interest to material science researchers working in both
industry and academia
This book covers current advances and practices in machining
fibre-reinforced polymer composites under various conventional and
nonconventional processes. It presents recent research and
practices for effective and efficient machining of difficult-to-cut
material, providing the technological 'know-how' on
delamination-free of drilling, milling, trimming, and other cutting
processes on fibre-reinforced polymer composites. It also guides
the reader on the selection of optimum machining parameters, tool
materials, as well as tool geometry. This book is of interest to
academicians, students, researchers, practitioners, and
industrialists working in aerospace, automotive, marine, and
construction industries.
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