This book explores the evolving landscape of metal additive manufacturing (AM), with a strong emphasis on alloy development, microstructure evolution, surface engineering, and process modeling. Designed for researchers, engineers, and graduate students, it provides a comprehensive understanding of how different metallic alloys behave under various AM processes, such as selective laser melting, directed energy deposition, and wire arc additive manufacturing. It offers detailed insights into the influence of processing parameters and post‑processing treatments on the mechanical and functional performance of printed parts.
With contributions from international experts in academia and industry, this text serves as a globally relevant resource that equips readers in materials, mechanical, and related engineering fields with the tools and knowledge needed to drive innovation and solve real‑world challenges in metal AM.
"synopsis" may belong to another edition of this title.
Aufa Adlia Nazari is a Researcher with the School of Engineering, Taylor’s University, Selangor, Malaysia.
Mohamad Zaki Hassan is an Associate Professor with the Faculty of Artificial Intelligence at Universiti Teknologi Malaysia in Kuala Lumpur.
James Ren is Professor of Engineering and Director of the Mechanical Engineering and Materials Research Centre (MEMARC) within the School of Engineering at Liverpool John Moores University, United Kingdom.
Zbigniew Brytan is an Associate Professor in the Department of Engineering Materials and Biomaterials, Faculty of Mechanical Engineering at Silesian University of Technology, Poland.
Afrim Gjelaj is an Associate Professor and Faculty of Mechanical Engineering at the University of Pristina, Kosovo.
"About this title" may belong to another edition of this title.
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Hardcover. Condition: new. Hardcover. This book explores the evolving landscape of metal additive manufacturing (AM), with a strong emphasis on alloy development, microstructure evolution, surface engineering, and process modeling. Designed for researchers, engineers, and graduate students, it provides a comprehensive understanding of how different metallic alloys behave under various AM processes, such as selective laser melting, directed energy deposition, and wire arc additive manufacturing. It offers detailed insights into the influence of processing parameters and postprocessing treatments on the mechanical and functional performance of printed parts.Includes both fundamental process descriptions and advanced topics such as thermodynamic modeling, realtime monitoring systems, lattice structure design, and predictive simulations.Gives special attention to surface modification techniquesranging from mechanical, chemical, and electrochemical treatments to advanced coating methodsthat are essential for improving fatigue life, corrosion resistance, and biocompatibility in AMfabricated parts.Relevant to applications in aerospace, biomedical implants, automotive components, and energy systems.Bridges the gap between laboratory research and industrial application by presenting a balanced mix of theoretical foundations, practical methodologies, and applicationdriven case studies.With contributions from international experts in academia and industry, this text serves as a globally relevant resource that equips readers in materials, mechanical, and related engineering fields with the tools and knowledge needed to drive innovation and solve realworld challenges in metal AM. This book explores metal additive manufacturing (AM), emphasizing alloy development, microstructure evolution, surface engineering, and process modeling. It explains how different metallic alloys behave under various AM processes and the influence of processing and post-processing on the performance of printed parts. This item is printed on demand. Shipping may be from multiple locations in the US or from the UK, depending on stock availability. Seller Inventory # 9781041222828
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Hardcover. Condition: new. Hardcover. This book explores the evolving landscape of metal additive manufacturing (AM), with a strong emphasis on alloy development, microstructure evolution, surface engineering, and process modeling. Designed for researchers, engineers, and graduate students, it provides a comprehensive understanding of how different metallic alloys behave under various AM processes, such as selective laser melting, directed energy deposition, and wire arc additive manufacturing. It offers detailed insights into the influence of processing parameters and postprocessing treatments on the mechanical and functional performance of printed parts.Includes both fundamental process descriptions and advanced topics such as thermodynamic modeling, realtime monitoring systems, lattice structure design, and predictive simulations.Gives special attention to surface modification techniquesranging from mechanical, chemical, and electrochemical treatments to advanced coating methodsthat are essential for improving fatigue life, corrosion resistance, and biocompatibility in AMfabricated parts.Relevant to applications in aerospace, biomedical implants, automotive components, and energy systems.Bridges the gap between laboratory research and industrial application by presenting a balanced mix of theoretical foundations, practical methodologies, and applicationdriven case studies.With contributions from international experts in academia and industry, this text serves as a globally relevant resource that equips readers in materials, mechanical, and related engineering fields with the tools and knowledge needed to drive innovation and solve realworld challenges in metal AM. This book explores metal additive manufacturing (AM), emphasizing alloy development, microstructure evolution, surface engineering, and process modeling. It explains how different metallic alloys behave under various AM processes and the influence of processing and post-processing on the performance of printed parts. This item is printed on demand. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability. Seller Inventory # 9781041222828
Quantity: 1 available