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This book combines the contributions of experts in the field to
describe the behavior of various materials, micromechanisms
involved during processing, and the optimization of cold-spray
technology. It spans production, characterization, and applications
including wear resistance, fatigue, life improvement, thermal
barriers, crack repair, and biological applications. Cold spray is
an innovative coating technology based on the kinetic energy gained
by particles sprayed at very high pressures. While the technique
was developed in the 1990s, industrial and scientific interest in
this technology has grown vastly in the last ten years. Recently,
many interesting applications have been associated with
cold-sprayed coatings, including wear resistance, fatigue life
improvement, thermal barriers, biological applications, and crack
repair. However, many fundamental aspects require clarification and
description.
This book describes spark plasma sintering (SPS) in depth. It
addresses fundamentals and material-specific considerations,
techniques, and applications across a broad spectrum of materials.
The book highlights methods used to consolidate metallic or ceramic
particles in very short times. It highlights the production of
complex alloys and metal matrix composites with enhanced mechanical
and wear properties. Emphasis is placed on the speed of the
sintering processes, uniformity in product microstructure and
properties, reduced grain growth, the compaction and sintering of
materials in one processing step, various materials processing, and
high energy efficiency. Current and potential applications in space
science and aeronautics, automation, mechanical engineering, and
biomedicine are addressed throughout the book.
Laser cladding is an additive manufacturing technology capable of
producing coatings due to the surface fusion of metals. The
selected powder is fed into a focused laser beam to be melted and
deposited as coating. This allows to apply material in a selected
way onto those required sections of complex components. The process
main properties are the production of a perfect metallurgically
bonded and fully dense coatings; the minimal heat affected zone and
low dilution between the substrate and filler material resulting in
functional coatings that perform at reduced thickness, so fewer
layers are applied; fine, homogeneous microstructure resulting from
the rapid solidification rate that promotes wear resistance of
carbide coatings; near net-shape weld build-up requires little
finishing effort; extended weldability of sensitive materials like
carbon-rich steels or nickel-based superalloys that are difficult
or even impossible to weld using conventional welding processes;
post-weld heat treatment is often eliminated as the small heat
affected zone minimizes component stress; excellent process
stability and reproducibility because it is numerical controlled
welding process. The typical applications are the dimensional
restoration; the wear and corrosion protection; additive
manufacturing. The wide range of materials that can be deposited
and its suitability for treating small areas make laser cladding
particularly appropriate to tailor surface properties to local
service requirements and it opens up a new perspective for surface
engineered materials. The main key aspect to be scientifically and
technologically explored are the type of laser; the powders
properties; the processing parameters; the consequent
microstructural and mechanical properties of the processed
material; the capability of fabrication of prototypes to rapid
tooling and rapid manufacturing. Distills critical concepts,
methods, and applications from leading full-length chapters, along
with the authors's own deep understanding of the material taught,
into a concise yet rigorous graduate and advanced undergraduate
text; Reinforces concepts covered with detailed solutions to
illuminating and challenging industrial applications; Discusses
current and future applications of laser cladding in additive
manufacturing.
This book describes the main approaches for production and
synthesis of nanostructured metals and alloys, taking into account
the fatigue behavior of materials in additive manufactured
components. Depending on the material type, form, and application,
a deep discussion of fatigue properties and crack behavior is also
provided. Pure nanostructured metals, complex alloys and composites
are further considered. Prof. Cavaliere's examination is supported
by the most up-to-date understanding from the scientific literature
along with a thorough presentation of theory. Bringing together the
widest range of perspective on its topic, the book is ideal for
materials researchers, professional engineers in industry, and
students interested in nanostructured materials, fracture/fatigue
mechanics, and additive manufacturing. Describes in detail the
relevance of nanostructures in additive manufacturing technologies;
Includes sufficient breadth and depth on theoretical modelling of
fatigue and crack behavior for use in the classroom; Identifies
many open questions regarding different theories through
experimental finding; Contextualizes the latest scientific results
for readers in industry.
This book describes improvements in the iron and steel making
process in the past few decades. It also presents new and improved
solutions to producing high quality products with low greenhouse
emissions. In addition, it examines legislative regulations
regarding greenhouse emissions all around the world and how to
control these dangerous emissions in iron and steel making plants.
This book describes improvements in the iron and steel making
process in the past few decades. It also presents new and improved
solutions to producing high quality products with low greenhouse
emissions. In addition, it examines legislative regulations
regarding greenhouse emissions all around the world and how to
control these dangerous emissions in iron and steel making plants.
The book describes the main approaches to produce and synthesize
iron and steel through hydrogen-based technologies. Depending on
the processing route and on the energy demand, the best available
techniques and the most forward-looking solutions are explained.
The book is edited with the contribution representing a range of
industries in order to evaluate the industrial feasibility of each
selected technology. It presents the most efficient solutions
applied by ironmaking and steelmaking factories all around the
world.Â
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