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This book provides fundamental understanding and practical
application of characteristics of flexural motion in the assessment
of the weld size and coating thickness. Some formulations of heat
transfer and flexural motion are introduced while displacement and
load correlation are used to estimate elastic modules and the size
of the heat affected zone as well as the coating thickness. The
case studies presented give a practical understanding of weld size
and coating thickness characterizations.
This book introduces model studies and experimental results
associated with laser forming and welding such as laser induced
bending, welding of sheet metals, and related practical
applications. The book provides insight into the physical processes
involved with laser forming and welding. The analytical study
covers the formulation of laser induced bending while the model
study demonstrates the simulation of bending and welding processes
using the finite element method. Analytical and numerical solutions
for laser forming and welding problems are provided.
This book introduces model studies associated with laser surface
processing such as conduction limited heating, surface re-melting,
Marangoni flow and its effects on the temperature field, re-melting
of multi-layered surfaces, laser shock processing, and practical
applications. The book provides insight into the physical processes
involved with laser surface heating and phase change in laser
irradiated region. It is written for engineers and researchers
working on laser surface engineering.
Heat Transport in Micro- and Nanoscale Thin Films presents aspects
and applications of the principle methods of heat transport in
relation to nanoscale films. Small-scale parts and thin films are
widely used in the electronics industry. However, the drastic
change in the thermal conductivity with reducing device size and
film thickness modifies the energy transport by heat-carrying
phonons in the film. Energy transfer in small-sized devices and
thin films deviate from the classical diffusion to radiative
transport. This book deals with micro/nano scale heat transfer in
small scale devices and the thin films, including interface
properties of cross-plane transport. The book fills the gap between
applications of the physical fundamentals and energy transport at
the micro- and nano scale, which will be valuable for academics,
researchers and students in the fields of materials science and
energy transport.
The Laser Cutting Process: Analysis and Applications presents a
comprehensive understanding of the laser cutting process and its
practical applications. The book includes modeling, such as thermal
and stress analysis, along with lamp parameter analysis for kerf
width predictions and their practical applications, such as laser
cutting of metallic and non-metallic materials and assessment of
quality. The book provides analytical considerations for laser
cutting, the importance of the affecting parameters, stress levels
formed in the cutting section, cutting efficiency and cut
morphology and metallurgy. It is designed to be used by individuals
working in laser machining and high energy processing.
This book provides fundamental understanding and practical
application of characteristics of flexural motion in the assessment
of the weld size and coating thickness. Some formulations of heat
transfer and flexural motion are introduced while displacement and
load correlation are used to estimate elastic modules and the size
of the heat affected zone as well as the coating thickness. The
case studies presented give a practical understanding of weld size
and coating thickness characterizations.
This book introduces model studies and experimental results
associated with laser forming and welding such as laser induced
bending, welding of sheet metals, and related practical
applications. The book provides insight into the physical processes
involved with laser forming and welding. The analytical study
covers the formulation of laser induced bending while the model
study demonstrates the simulation of bending and welding processes
using the finite element method. Analytical and numerical solutions
for laser forming and welding problems are provided.
This book introduces model studies associated with laser surface
processing such as conduction limited heating, surface re-melting,
Marangoni flow and its effects on the temperature field, re-melting
of multi-layered surfaces, laser shock processing, and practical
applications. The book provides insight into the physical processes
involved with laser surface heating and phase change in laser
irradiated region. It is written for engineers and researchers
working on laser surface engineering.
This book introduces laser drilling processes including modelling,
quality assessment of drilled holes, and laser drilling
applications. It provides insights into the laser drilling process
and relation among the drilling parameters pertinent to improved
end product quality. This book is written for engineers and
scientists working on laser machining, particularly laser drilling.
This book introduces the concept of integrated planning for
maintenance and production taken into account quality and safety
for high global socio-economic impact. It provides insight into the
planning process at a global level starting from the business level
and ending with the operational level where the plan is implemented
and controlled.
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