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Fatigue in Additive Manufactured Metals provides a brief overview
of the fundamental mechanics involved in metal fatigue and
fracture, assesses the unique properties of additive manufactured
metals, and provides an in-depth exploration of how and why fatigue
occurs in additive manufactured metals. Additional sections cover
solutions for preventing it, best-practice design methods, and
more. The book recommends cutting-edge evidence-based approaches
for designing longer lasting additive manufactured metals,
discusses the latest trends in the field and the various aspects of
low cycle fatigue, and looks at both post-treatment and
manufacturing process-based solutions. By providing international
standards and testing procedures of additive manufactured metal
parts and discussing the environmental impacts of additive
manufacturing of metals and outlining simulation and modeling
scenarios, this book is an ideal resource for users in industry.
Laser powder bed fusion of metals is a technology that makes use of
a laser beam to selectively melt metal powder layer-by-layer in
order to fabricate complex geometries in high performance
materials. The technology is currently transforming aerospace and
biomedical manufacturing and its adoption is widening into other
industries as well, including automotive, energy, and traditional
manufacturing. With an increase in design freedom brought to bear
by additive manufacturing, new opportunities are emerging for
designs not possible previously and in material systems that now
provide sufficient performance to be qualified in end-use
mission-critical applications. After decades of research and
development, laser powder bed fusion is now enabling a new era of
digitally driven manufacturing. Fundamentals of Laser Powder Bed
Fusion of Metals will provide the fundamental principles in a broad
range of topics relating to metal laser powder bed fusion. The
target audience includes new users, focusing on graduate and
undergraduate students; however, this book can also serve as a
reference for experienced users as well, including senior
researchers and engineers in industry. The current best practices
are discussed in detail, as well as the limitations, challenges,
and potential research and commercial opportunities moving forward.
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