Details

Additive Manufacturing Technology


Additive Manufacturing Technology

Design, Optimization, and Modeling
1. Aufl.

von: Kun Zhou

142,99 €

Verlag: Wiley-VCH
Format: PDF
Veröffentl.: 20.12.2022
ISBN/EAN: 9783527833917
Sprache: englisch
Anzahl Seiten: 400

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Beschreibungen

<b>Additive Manufacturing Technology</b> <p><b>Highly comprehensive resource covering all key aspects of the current developments of additive manufacturing</b> <p><i>Additive Manufacturing Technology: Design, Optimization, and Modeling</i> provides comprehensive and in-depth knowledge of the latest advances in various additive manufacturing technologies for polymeric materials, metals, multi-materials, functionally graded materials, and cell-laden bio-inks. It also details the application of numerical modeling in facilitating the design and optimization of materials, processes, and printed parts in additive manufacturing. <p>The topics covered in <i>this book</i> include: <ul><li> Fundamentals and applications of 4D printing, 3D bioprinting of cell-laden bio-inks, and multi-material additive manufacturing</li> <li> Alloy design for metal additive manufacturing, mechanisms of metallurgical defect formation, and the mechanical properties of printed alloys</li> <li> Modified inherent strain method for the rapid prediction of residual stress and distortion within parts fabricated by additive manufacturing</li> <li> Modeling of the different stages in polymer and metal additive manufacturing processes, including powder spreading, melting, and thermal stress evolution</li></ul> <p>By providing extensive coverage of highly relevant concepts and important topics in the field of additive manufacturing, this book highlights its essential role in Industry 4.0 and serves as a valuable resource for scientists, engineers, and students in materials science, engineering, and biomedicine.
Chapter 1. Introduction<br> Chapter 2. Powder Bed Fusion Additive Manufacturing of Polymer Composites<br> Chapter 3. 4D printing<br> Chapter 4. Additive Manufacturing of Biomaterials<br> Chapter 5. Recent Progress in 3D Cell Printing Technologies<br> Chapter 6. Alloy Design for Metal Additive Manufacturing<br> Chapter 7. Additive Manufacturing of Ceramics<br> Chapter 8. Additive Manufacturing of Multiple Materials and Functionally Graded Material Components<br> Chapter 9. Modified Inherent Strain Method for Predicting Residual Stress in Metal Additive Manufacturing<br> Chapter 10. High-Fidelity Modeling of Metal Additive Manufacturing<br> Chapter 11. Modeling of Polymer Powder-Based Additive Manufacturing<br> Chapter 12. Design and Optimization for Additive Manufacturing
<p><b>Kun Zhou</b> is Professor of Mechanical Engineering in the School of Mechanical and Aerospace Engineering at Nanyang Technological University, Singapore. His research interests focus on mechanics of materials and additive manufacturing. He has founded the journal Smart Manufacturing and serves as its Editor-in-Chief. He is also a co-founder of Journal of Micromechanics and Molecular Physics and serves as its Co-Editor-in-Chief. He is a Fellow of Institution of Mechanical Engineers, Royal Aeronautical Society, Royal Society of Chemistry, Institute of Physics, and Institute of Materials, Minerals & Mining.</p>
<p><b>Highly comprehensive resource covering all key aspects of the current developments of additive manufacturing</b> <p><i>Additive Manufacturing Technology: Design, Optimization, and Modeling</i> provides comprehensive and in-depth knowledge of the latest advances in various additive manufacturing technologies for polymeric materials, metals, multi-materials, functionally graded materials, and cell-laden bio-inks. It also details the application of numerical modeling in facilitating the design and optimization of materials, processes, and printed parts in additive manufacturing. <p>The topics covered in <i>this book</i> include: <ul><li> Fundamentals and applications of 4D printing, 3D bioprinting of cell-laden bio-inks, and multi-material additive manufacturing</li> <li> Alloy design for metal additive manufacturing, mechanisms of metallurgical defect formation, and the mechanical properties of printed alloys</li> <li> Modified inherent strain method for the rapid prediction of residual stress and distortion within parts fabricated by additive manufacturing</li> <li> Modeling of the different stages in polymer and metal additive manufacturing processes, including powder spreading, melting, and thermal stress evolution</li></ul> <p>By providing extensive coverage of highly relevant concepts and important topics in the field of additive manufacturing, this book highlights its essential role in Industry 4.0 and serves as a valuable resource for scientists, engineers, and students in materials science, engineering, and biomedicine.

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