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This book gives a comprehensive overview of the rapidly evolving
field of three-dimensional (3D) printing, and its increasing
applications in the biomedical domain. 3D printing has distinct
advantages like improved quality, cost-effectiveness, and higher
efficiency compared to traditional manufacturing processes. Besides
these advantages, current challenges and opportunities regarding
choice of material, design, and efficiency are addressed in the
book. Individual chapters also focus on select areas of
applications such as surgical guides, tissue regeneration,
artificial scaffolds and implants, and drug delivery and release.
This book will be a valuable source of information for researchers
and professionals interested in the expanding biomedical
applications of 3D printing.
There has been a great deal of progress in additive manufacturing
(AM) during the past two decades and recent developments have been
highlighted by many researchers. However, until now, there has been
a limit to what is available for beginners in a step-by-step
format, showcasing the different commercial AM technologies for
field application. This book helps fill that gap. Additive
Manufacturing: Applications and Innovations presents case studies
of commonly used AM technologies with basic numerical problems for
better understanding. It also includes hybrid processes and 4D
printing applications, which currently are not offered in other AM
books. Features Offers solved and unsolved problems in additive
manufacturing Provides an understanding for additive manufacturing
per international standards Includes case studies for better
understanding of the individual processes Presents a review of
specific technology highlights Introduces future research
directions, mainly in 4D printing applications
4D Printing: Fundamentals and Applications explores both autonomic
and non-autonomic systems with different stimulus such as
temperature, current, moisture, light and sound. In addition, the
fifth dimensional aspect using more than one stimulus is outlined
for additive manufacturing processes. The book presents both an
introduction to the basic understanding of hybrid processes and
explores the physics behind the process (in the form of derivation
and numerical problems). For the field engineer, applicable codes
and standards for each hybrid process are provided. Lastly, case
studies are included in each section to provide the reader with a
model to explore future research directions.
This book discusses the 3D printing of sensors, actuators, and
antennas and illustrates how manufacturers can create smart
materials that can be effectively used to prepare low-cost
products. The book also includes how to select the appropriate
process for your manufacturing needs. 3D Printing of Sensors,
Actuators, and Antennas for Low-Cost Product Manufacturing offers
the most recent developments in 3D printing of sensors, actuators,
and antennas for low-cost product manufacturing; the book
highlights some of the commercially available low-cost 3D printing
processes that have higher efficiency and accuracy. Fundamental
principles and working methodologies are presented with a critical
review of the past work involved and current trends with future
predictions. It covers composite and polymeric materials widely
used and specifically focuses on low-cost elements. Recent
breakthroughs and advantages in product manufacturing when printing
smart materials are also discussed. Manufacturing engineers,
product designers, manufacturing industries, as well as graduate
students, and research scholars will find this book very useful for
their work and studies.
Current Trends in Biomanufacturing focuses on cutting-edge research
regarding the design, fabrication, assembly, and measurement of
bio-elements into structures, devices, and systems. The field of
biomaterial and biomanufacturing is growing exponentially in order
to meet the increasing demands of for artificial joints, organs and
bone-fixation devices. Rapid advances in the biological sciences
and engineering are leading to newer and viable resources, methods
and techniques that may providing better quality of life and more
affordable health care services. The book covers the broad aspects
of biomanufacturing, including: synthesis of biomaterials; implant
coating techniques; spark plasma sintering; microwave processing;
and cladding, powder metallurgy and electrospinning. The
contributors illustrate the recent trends of biomanufacturing,
highlighting the important aspects of biomaterial synthesis, and
their use as feedstock of fabrication technologies and their
characterization, along with their clinical practices. Current
Trends in Biomanufacturing updates researchers and scientists the
novelties and techniques of the field, as it summarises numerous
aspects of biomanufacturing, including synthesis of biomaterials,
fabrication of biomedical structures, their in-vivo/ in-vitro,
mechanical analysis and associated ISO standards.
There has been a great deal of progress in additive manufacturing
(AM) during the past two decades and recent developments have been
highlighted by many researchers. However, until now, there has been
a limit to what is available for beginners in a step-by-step
format, showcasing the different commercial AM technologies for
field application. This book helps fill that gap. Additive
Manufacturing: Applications and Innovations presents case studies
of commonly used AM technologies with basic numerical problems for
better understanding. It also includes hybrid processes and 4D
printing applications, which currently are not offered in other AM
books. Features Offers solved and unsolved problems in additive
manufacturing Provides an understanding for additive manufacturing
per international standards Includes case studies for better
understanding of the individual processes Presents a review of
specific technology highlights Introduces future research
directions, mainly in 4D printing applications
This new book covers process optimization and process capability
for hybrid NCMP (nonconventional machining process), and combines
NCMP and conventional machining removal processes for various
hybridized processes. This book is focused on understanding the
basic mechanism of some of the NCMPs for their possible
hybridization. This book can be used for the development of a basic
framework on hybridization for the selected NCMP. The framework is
further strengthened by case studies included in this book. The
concept of macro-modeling for NCMP and the framework for the
development of industrial standards have been outlined. This book
is of interest to researchers and graduate students working in the
field of hybrid NCMP, especially for the development of novel
processes. Field engineers of NCMP may also use it for further
process development. Features: Provides a detailed description of
mechanism for different NCMPs for possible hybridization. Includes
a case study on mechanism of processes. Offers a systematic
approach for understanding NCMP. Covers the issues of process
optimization and process capability for hybrid NCMP.
Presents exclusive material on integration of 4D imaging and 4D
printing Demonstrates the industrial applications of 4D imaging in
4D printing using multiple case studies Discusses use of open
source 4D imaging tools for biomedical applications Includes
in-house development of smart materials for 4D printing Reviews low
cost, indigenous lab scale solutions for various veterinary
applications
This book gives a comprehensive overview of the rapidly evolving
field of three-dimensional (3D) printing, and its increasing
applications in the biomedical domain. 3D printing has distinct
advantages like improved quality, cost-effectiveness, and higher
efficiency compared to traditional manufacturing processes. Besides
these advantages, current challenges and opportunities regarding
choice of material, design, and efficiency are addressed in the
book. Individual chapters also focus on select areas of
applications such as surgical guides, tissue regeneration,
artificial scaffolds and implants, and drug delivery and release.
This book will be a valuable source of information for researchers
and professionals interested in the expanding biomedical
applications of 3D printing.
This book provides a comprehensive and up-to-date discussion of
breakthroughs on additive manufacturing for plastic material
recycling to boost a circular economy. It offers new ideas of
combining/hybridizing processing methods that work as a source of
information for manufacturers in making new and strategic product
development plans. Additive Manufacturing for Plastic Recycling:
Efforts in Boosting a Circular Economy provides a critical,
comprehensive, methodological, and strong state-of-the-art work on
the processing of thermoplastic and thermosetting along with new
directions and applications. It describes the common and hybrid
approaches of recycling processes and includes theoretical and
practical ideas of combining/hybridizing processing methods with
the use of fused deposition modelling, which is one of the low-cost
additive manufacturing techniques. The book also discusses
mechanical twin-screw extrusion followed by case studies for
developing hybrid composite structures for biomedical and
structural applications. Recent innovations in melt processing for
recycling and the fundaments, process parameters investigations,
and applications for new product development are also presented.
This book is a first-hand reference source of information for
academic scholars and commercial manufacturers for making strategic
development plans for new product development.
Focuses on Design of Experiment based computational models which
involves finite element analysis along with ergonomic based design
of tooling (for both conventional and unconventional manufacturing
processes) Directed towards smart manufacturing, this book outlines
4D solutions for 3D printed parts actuated through stimulus such as
heat, light, chemical processing Acts as a first-hand source of
information for academic scholars and commercial manufacturers
while assisting in making strategic manufacturing development plans
Discusses work and development in the field of product
manufacturing of any mechanical system. Provides case studies and
solved numerical solutions at the end of each chapter for easy
reader comprehension
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