Advances in Metal Additive Manufacturing explains fundamental information and the latest research on new technologies, including powder bed fusion, direct energy deposition using high energy beams, and hybrid additive and subtractive methods. This book introduces readers to the technology, provides everything needed to understand how the different stages work together, and inspires to think beyond traditional metal processing to capture new ideas in metal. Chapters offer an introduction on metal additive manufacturing, processes, and properties and standards and then present surveys on the…mehr
Advances in Metal Additive Manufacturing explains fundamental information and the latest research on new technologies, including powder bed fusion, direct energy deposition using high energy beams, and hybrid additive and subtractive methods. This book introduces readers to the technology, provides everything needed to understand how the different stages work together, and inspires to think beyond traditional metal processing to capture new ideas in metal. Chapters offer an introduction on metal additive manufacturing, processes, and properties and standards and then present surveys on the most significant international advances in metal additive manufacturing.
Throughout, the book presents a focus on the effect of important process parameters on the microstructure, mechanical properties and wear behavior of additively manufactured parts.
Produktdetails
Produktdetails
Woodhead Publishing Reviews: Mechanical Engineering Series
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Autorenporträt
Dr. Salunkhe Sachin is a Professor in the Mechanical Engineering Department at Gazi University, Ankara, Turkey. He received his Bachelor's in Mechanical Engineering from Dr. Babasaheb Ambedkar Marathwada University, Aurangabad, India. He received his Master of Technology in CAD/CAM and PhD from S.V. National Institute of Technology, Surat, India. His main research interests are in press tool design, metal additive manufacturing, A.I. applications in manufacturing, expert systems for die design, sheet metal forming, wear analysis, fatigue analysis, and high strain rate. He has more than 160 research papers in reputed journals, conferences and 25 book chapters to his credit. He is also an editor of various journals, such as Metals. Lubricants (MDPI), Advances in Materials Science and Engineering, Proceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials: Design and Applications (SAGE) and International journal for simulation and multidisciplinary design op
timization, EDP Science.
Prof. (Dr.) J. Paulo Davim is a Full Professor at the University of Aveiro, Portugal, with over 35 years of experience in Mechanical, Materials, and Industrial Engineering. He holds multiple distinguished academic titles, including a PhD in Mechanical Engineering and a DSc from London Metropolitan University. He has published over 300 books and 600 articles, with more than 36,500 citations. He is ranked among the world's top 2% scientists by Stanford University and holds leadership positions in numerous international journals, conferences, and research projects.
Inhaltsangabe
1. Powder bed fusion processes: main classes of alloys, current status, and technological trends 2. Directed energy deposition processes and process design by artificial intelligence 3. Current trends of metal additive manufacturing in the defense, automobile, and aerospace industries 4. Review of Microstructure and Mechanical properties of materials manufactured by direct energy deposition 5. Postprocessing challenges in metal AM: Strategies for achieving homogeneous microstructure in Ni-based superalloys 6. Design and topology optimization for additive manufacturing of multilayer (SS316L and AlSi10Mg) piston 7. Mechanical properties of titanium alloys additive manufacturing for biomedical applications
1. Powder bed fusion processes: main classes of alloys, current status, and technological trends 2. Directed energy deposition processes and process design by artificial intelligence 3. Current trends of metal additive manufacturing in the defense, automobile, and aerospace industries 4. Review of Microstructure and Mechanical properties of materials manufactured by direct energy deposition 5. Postprocessing challenges in metal AM: Strategies for achieving homogeneous microstructure in Ni-based superalloys 6. Design and topology optimization for additive manufacturing of multilayer (SS316L and AlSi10Mg) piston 7. Mechanical properties of titanium alloys additive manufacturing for biomedical applications
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