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This book explores the recent developments, perspectives on future
research, and pertinent data from academia, industry, and
government research laboratory to discuss fundamental mechanisms as
well as processing and applications of advanced metallic and
ceramic thin film and coating materials for energy and
environmental applications. It is a platform to disseminate the
latest research progress related to processing, characterization,
and modelling. The authors address both thermal barrier and
environmental coatings; magnetic and thermoelectric materials; and
solar cell and solid oxide fuel cell materials. It is appropriate
supplementary reading for students and primary reading for
researchers in materials science and engineering.
Multiscale Modeling of Additively Manufactured Metals: Application
to Laser Powder Bed Fusion Process provides comprehensive coverage
on the latest methodology in additive manufacturing (AM) modeling
and simulation. Although there are extensive advances within the AM
field, challenges to predictive theoretical and computational
approaches still hinder the widespread adoption of AM. The book
reviews metal additive materials and processes and discusses
multiscale/multiphysics modeling strategies. In addition, coverage
of modeling and simulation of AM process in order to understand the
process-structure-property relationship is reviewed, along with the
modeling of morphology evolution, phase transformation, and defect
formation in AM parts. Residual stress, distortion,
plasticity/damage in AM parts are also considered, with scales
associated with the spatial, temporal and/or material domains
reviewed. This book is useful for graduate students, engineers and
professionals working on AM materials, equipment, process,
development and modeling.
Additive Manufacturing: Materials, Processes, Quantifications and
Applications is designed to explain the engineering aspects and
physical principles of available AM technologies and their most
relevant applications. It begins with a review of the recent
developments in this technology and then progresses to a discussion
of the criteria needed to successfully select an AM technology for
the embodiment of a particular design, discussing material
compatibility, interfaces issues and strength requirements. The
book concludes with a review of the applications in various
industries, including bio, energy, aerospace and electronics. This
book will be a must read for those interested in a practical,
comprehensive introduction to additive manufacturing, an area with
tremendous potential for producing high-value, complex,
individually customized parts. As 3D printing technology advances,
both in hardware and software, together with reduced materials cost
and complexity of creating 3D printed items, these applications are
quickly expanding into the mass market.
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