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This book presents a comprehensive analysis of the emerging
underwater challenges facing India in the Indian Ocean region. With
major economic powers like China, the United States, and Russia
modernising their submarine fleets and building advanced unmanned
underwater vessels to enhance surveillance capabilities, the
competition in the Indo-Pacific underwater domain has intensified.
The book * Focuses on the issues of detecting, tracking, and
classifying submarines/underwater drones in the Indian Ocean. *
Examines the Indian Navy's present anti-submarine warfare (ASW)
capabilities in combating underwater threats and discusses the
scope for inter-agency, inter-departmental cooperation framework to
monitor the undersea activity in the region. * Studies the naval
composition and strengths of India and other countries in the
neighbourhood and reviews maritime domain awareness practices
employed by leading navies including NATO for submarine detection.
* Assesses the technology development efforts to deal with these
challenges and brings out recommendations. An expert study of
undersea surveillance, this book will be indispensable to students
and researchers of military and strategic studies, defence studies,
critical security, conflict resolution, intelligence studies, and
security studies. It will also be of interest to governments, naval
establishments, think tanks, and public policy institutes.
The main objective of the book is to expose readers to the basics
of sustainable material forming and joining technologies, and to
discuss the relationship between conventional and sustainable
processes. It also provides case studies for sustainable issues in
material forming and joining processes, workouts for converting
conventional processes to green processes, and highlights the
importance of awareness on sustainable and green manufacturing
through education. The book will include green and sustainability
concepts in material forming like bulk forming and sheet forming
emphasizing hot forming, materials development, lubrication, and
minimizing defects. Key Features Conceptualizes green and
sustainability issues towards efficient material forming and
joining Addresses important aspects of sustainable manufacturing by
forming operations Presents comparison between traditional and
sustainable manufacturing processes Includes practical case studies
from industry experts Discusses green and sustainability concepts
in material forming like bulk forming and sheet forming emphasizing
hot forming, materials development, lubrication, and minimizing
defects
This edited book contains extended research papers from AIMTDR
2014. This includes recent research work in the fields of friction
stir welding, sheet forming, joining and forming, modeling and
simulation, efficient prediction strategies, micro-manufacturing,
sustainable and green manufacturing issues etc. This will prove
useful to students, researchers and practitioners in the field of
materials forming and manufacturing.
This volume presents a selection of papers from the 2nd
International Conference on Computational Methods in Manufacturing
(ICCMM 2019). The papers cover the recent advances in computational
methods for simulating various manufacturing processes like
machining, laser welding, laser bending, strip rolling, surface
characterization and measurement. Articles in this volume discuss
both the development of new methods and the application and
efficacy of existing computational methods in manufacturing sector.
This volume will be of interest to researchers in both industry and
academia working on computational methods in manufacturing.
The main objective of the book is to expose readers to the basics
of sustainable material forming and joining technologies, and to
discuss the relationship between conventional and sustainable
processes. It also provides case studies for sustainable issues in
material forming and joining processes, workouts for converting
conventional processes to green processes, and highlights the
importance of awareness on sustainable and green manufacturing
through education. The book will include green and sustainability
concepts in material forming like bulk forming and sheet forming
emphasizing hot forming, materials development, lubrication, and
minimizing defects. Key Features Conceptualizes green and
sustainability issues towards efficient material forming and
joining Addresses important aspects of sustainable manufacturing by
forming operations Presents comparison between traditional and
sustainable manufacturing processes Includes practical case studies
from industry experts Discusses green and sustainability concepts
in material forming like bulk forming and sheet forming emphasizing
hot forming, materials development, lubrication, and minimizing
defects
This volume presents a selection of papers from the 2nd
International Conference on Computational Methods in Manufacturing
(ICCMM 2019). The papers cover the recent advances in computational
methods for simulating various manufacturing processes like
machining, laser welding, laser bending, strip rolling, surface
characterization and measurement. Articles in this volume discuss
both the development of new methods and the application and
efficacy of existing computational methods in manufacturing sector.
This volume will be of interest to researchers in both industry and
academia working on computational methods in manufacturing.
Sustainable Manufacturing Processes provides best practice advice
on sustainable manufacturing methods, with examples from industry
as well as important supporting theory. In the current
manufacturing industry, processes and materials are developed with
close reference to sustainability issues, with an outward look to
optimum production efficiency and reduced environmental impact.
Important topics such as the use of renewable energy, reduction of
material waste and recycling, reduction in energy and water
consumption, and reduction in emissions are all discussed, along
with broad coverage of deformation and joining technologies,
computational techniques, and computer-aided engineering. In
addition, a wide range of traditional and innovative manufacturing
technologies are covered, including friction stir welding,
incremental forming, abrasive water jet machining, laser beam
machining, sustainable foundry, porous material fabrication by
powder metallurgy, laser and additive manufacturing, and
thermoelectric and thermomagnetic energy harvesting.
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