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Advanced Machining and Finishing explains the background theory,
working principles, technical specifications, and latest
developments in a wide range of advanced machining and finishing
techniques. The book includes valuable technical information,
tables of data, and diagrams to assist machinists. Drawing on the
work of experts in both academia and industry, coverage addresses
theoretical developments as well as practical improvements from
R&D. With over 25 important processes, from electro-chemical
machining to nano-machining and magnetic field assisted finishing,
this is the most complete guide to this subject available. This
unique guide will allow readers to compare the characteristics of
different processes, understand how they work, and provide
parameters for their effective implementation. This is part of a 4
volume set entitled Handbooks in Advanced Manufacturing, with the
other 3 addressing Advanced Welding and Deforming, Additive
Manufacturing and Surface Treatment, and Sustainable Manufacturing
Processes.
Sustainable Manufacturing examines the overall sustainability of a
wide range of manufacturing processes and industrial systems. With
chapters addressing machining, casting, additive and gear
manufacturing processes; and hot topics such as remanufacturing,
life cycle engineering, and recycling, this book is the most
complete guide to this topic available. Drawing on experts in both
academia and industry, coverage addresses theoretical developments
and practical improvements from research and innovations. This
unique book will advise readers on how to achieve sustainable
manufacturing processes and systems, and further the clean and safe
environment. This handbook is a part of the four volume set
entitled Handbooks in Advanced Manufacturing. The other three
address Advanced Machining and Finishing, Advanced Welding and
Deforming, and Additive Manufacturing.
This book provides details on the innovations made to achieve
sustainability in manufacturing. It highlights the trends of
current progress in research and development being done to achieve
overall sustainability in manufacturing technology. Green-EDM,
Hybrid machining, MQL assisted machining, sustainable casting,
welding, finishing and casting, energy- and resource-efficient
manufacturing are some of the important topics discussed in this
book.
This book provides a detailed understanding of optimization methods
as they are implemented in a variety of manufacturing, fabrication
and machining processes. It covers the implementation of
statistical methods, multi-criteria decision making methods and
evolutionary techniques for single and multi-objective optimization
to improve quality, productivity, and sustainability in
manufacturing. It reports on the theoretical aspects, special
features, recent research and latest development in the field.
Optimization of Manufacturing Processes is a valuable source of
information for researchers and practitioners, as it fills the gap
where no dedicated book is available on intelligent
manufacturing/modeling and optimization in manufacturing. Readers
will develop an understanding of the implementation of statistical
and evolutionary techniques for modeling and optimization in
manufacturing.
This book focuses on surface engineering of a wide range of modern
materials such as smart alloys, light metals, polymers, and
composites etc. for their improved manufacturability. It discusses
the effect of surface engineering processes namely friction stir
processing, forming, spark erosion, welding, laser heating, and
coating etc. on various properties of modern materials. The book
aims to facilitate researchers and engineers for manufacturing
modern materials for numerous commercial, precision and scientific
applications.
Advanced Welding and Deforming explains the background theory,
working principles, technical specifications, and latest
developments on a wide range of advanced welding-joining and
deforming techniques. The book's subject matter covers
manufacturing, with chapters specifically addressing
remanufacturing and 3D printing applications. Drawing on experts in
both academia and industry, coverage addresses theoretical
developments as well as practical improvements from R&D. By
presenting over 35 important processes, from plasma arc welding to
nano-joining and hybrid friction stir welding, this is the most
complete guide to this field available. This unique guide will
allow readers to compare the characteristics of different
processes, understand how they work, and create parameters for
their effective implementation. As part of a 4 volume set entitled
Handbooks in Advanced Manufacturing, this series also includes
volumes on Advanced Machining and Finishing, Additive Manufacturing
and Surface Treatment, and Sustainable Manufacturing Processes.
This book bridges the gaps where limited resources are available on
comprehensive coverage of spark erosion machining (SEM) based
processes. It provides researchers and scholars a vast amount of
information on recent research on the subject. It also serves as a
resource of novel and specialized applications of spark erosion
machining and its variants, for students and faculties involved
with advanced machining processes. Some salient features of the
book: Describes various important aspects of spark-erosion based
processes including their derived and hybrid processes. Includes a
broad scope of SEM applications from industrial, commercial, and
scientific to aerospace, automobiles and biomedical domains. Covers
a wide range of materials applications of SE-based processes to
different exotic and difficult-to-machine materials, i.e.
superalloys, composites, ceramics, shape memory alloys, etc.
Provides details micro version of EDM and WEDM processes and their
specialized applications.
High-Speed Machining covers every aspect of this important subject,
from the basic mechanisms of the technology, right through to
possible avenues for future research. This book will help readers
choose the best method for their particular task, how to set up
their equipment to reduce chatter and wear, and how to use
simulation tools to model high-speed machining processes. The
different applications of each technology are discussed throughout,
as are the latest findings by leading researchers in this field.
For any researcher looking to understand this topic, any
manufacturer looking to improve performance, or any manager looking
to upgrade their plant, this is the most comprehensive and
authoritative guide available.
This book covers the mechanism, salient features, and important
aspects of various subtractive, additive, forming and hybrid
techniques to manufacture near net-shaped products. The latest
research in this area as well as possible future research are also
highlighted.
This book provides details on various micro and precision
manufacturing and finishing operations performed by conventional
and advanced processes, including micro-manufacturing of
micro-tools and precision finishing of engineered components. It
describes the process mechanism, principles and parameters while
performing micro-fabrication and precision finishing operations.
The text provides the readers with knowledge of micro and precision
manufacturing and encourages them to explore the future venues in
this field.
Advanced Gear Manufacturing and Finishing offers detailed coverage
of advanced manufacturing technologies used in the production of
gears, including new methods such as spark erosion machining,
abrasive water jet machining, additive layer manufacturing, laser
shaping, and sustainable manufacturing of gears. The industry in
this area is constantly producing new settings where gears must
endure ever increasing stresses, strains, and temperatures.
Advanced methods in manufacturing, finishing, and surface property
enhancement have emerged in recent years to meet these challenges.
This unique book takes a critical look at the state-of-the-art
research into these new methods, and the latest improvements to
classic technologies in both gear manufacturing and finishing. This
book is essential reading for researchers and engineers working in
the fields of powertrain manufacturing, gear technology, and
advanced manufacturing technologies.
This book provides a detailed understanding of various forming,
machining, and post processing techniques. Working principle,
process mechanism, salient features and latest developments are
primarily focused. It presents some basic and specialized processes
to produce quality engineered parts. This book also incorporates
some investigations on modelling, simulation and optimization of
the aforementioned processes to improve quality and performance,
productivity, and sustainability.
This book focuses on surface engineering of a wide range of modern
materials such as smart alloys, light metals, polymers, and
composites etc. for their improved manufacturability. It discusses
the effect of surface engineering processes namely friction stir
processing, forming, spark erosion, welding, laser heating, and
coating etc. on various properties of modern materials. The book
aims to facilitate researchers and engineers for manufacturing
modern materials for numerous commercial, precision and scientific
applications.
Presents comprehensive information on advanced technologies in both
manufacturing and industrial engineering Focuses on Industry 4.0
based technologies in manufacturing Provides a collection of unique
experimental research along with case studies Discusses Micro and
Sustainable Manufacturing Technologies Sheds light on advancements
for enhancement in productivity, quality, and sustainability
This book provides a detailed understanding of various forming,
machining, and post processing techniques. Working principle,
process mechanism, salient features and latest developments are
primarily focused. It presents some basic and specialized processes
to produce quality engineered parts. This book also incorporates
some investigations on modelling, simulation and optimization of
the aforementioned processes to improve quality and performance,
productivity, and sustainability.
This book covers various multiple-criteria decision making (mcdm)
methods for modeling and optimization of advanced manufacturing
processes (AMPs). Processes such as non-conventional machining,
rapid prototyping, environmentally conscious machining and hybrid
machining are finally put together in a single book. It highlights
the research advances and discusses the published literature of the
last 15 years in the field. Case studies of real life manufacturing
situations are also discussed.
This book provides details and collective information on working
principle, process mechanism, salient features, and unique
applications of various advanced manufacturing techniques and
processes belong. The book is divided in three sessions covering
modern machining methods, advanced repair and joining techniques
and, finally, sustainable manufacturing. The latest trends and
research aspects of those fields are highlighted.
This book bridges the gaps where limited resources are available on
comprehensive coverage of spark erosion machining (SEM) based
processes. It provides researchers and scholars a vast amount of
information on recent research on the subject. It also serves as a
resource of novel and specialized applications of spark erosion
machining and its variants, for students and faculties involved
with advanced machining processes. Some salient features of the
book: Describes various important aspects of spark-erosion based
processes including their derived and hybrid processes. Includes a
broad scope of SEM applications from industrial, commercial, and
scientific to aerospace, automobiles and biomedical domains. Covers
a wide range of materials applications of SE-based processes to
different exotic and difficult-to-machine materials, i.e.
superalloys, composites, ceramics, shape memory alloys, etc.
Provides details micro version of EDM and WEDM processes and their
specialized applications.
This book provides details and collective information on working
principle, process mechanism, salient features, and unique
applications of various advanced manufacturing techniques and
processes belong. The book is divided in three sessions covering
modern machining methods, advanced repair and joining techniques
and, finally, sustainable manufacturing. The latest trends and
research aspects of those fields are highlighted.
This book provides a detailed understanding of optimization methods
as they are implemented in a variety of manufacturing, fabrication
and machining processes. It covers the implementation of
statistical methods, multi-criteria decision making methods and
evolutionary techniques for single and multi-objective optimization
to improve quality, productivity, and sustainability in
manufacturing. It reports on the theoretical aspects, special
features, recent research and latest development in the field.
Optimization of Manufacturing Processes is a valuable source of
information for researchers and practitioners, as it fills the gap
where no dedicated book is available on intelligent
manufacturing/modeling and optimization in manufacturing. Readers
will develop an understanding of the implementation of statistical
and evolutionary techniques for modeling and optimization in
manufacturing.
This book presents insights in green techniques used in
conventional and advanced machining. It consists of various
experimental case studies conducted by the authors on green
machining of difficult-to-machine materials, polymer and ceramic
materials. Effects of green techniques / processes on machining
properties like material removal rate, surface quality, geometric
accuracy, productivity, and environment while machining various
materials are reported.
This book showcases different processes of fabrication and
processing applied to shape memory alloys. It provides details and
collective information on working principles, process mechanisms,
salient features, novel aspects, process capabilities, properties
of material and unique applications of shape memory alloys. The
recent progress on fabrication and processing are specially
addressed in this book. It covers major topics of manufacturing
such as machining, joining, welding and processing of shape memory
alloys.
This book presents the potential applications of hard materials as
well as the latest trends and challenges in machining hard
materials. Models for online monitoring to adjust parameters to
obtain desired machining characteristics (i.e. reverse modelling)
are discussed in this book. The conflicting requirements (i.e.
maximize: material removal rate, roundness and minimize: surface
roughness, dimensional ovality, co axiality, tool wear) in
machining for industry personal is solved using advanced
optimization tools. In addition, the framework for experimental
modelling, predictive physic-based forward and reverse process
models and optimization for better machining characteristics
applicable to industry are proposed.
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