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Presents the additive manufacturing process-structure-property relationships and optimizes the manufacturing parameters and machines via computational modeling techniques
Computational Modeling of Additive Manufacturing provides a step-by-step guide, covering topics from basic physics and governing equations to the implementation, experimental validation, model capability, and physical mechanisms obtained from simulation, as well as expert perspectives on future outlooks. With a well-rounded exploration of key areas, this book integrates various modeling techniques, including multi-physics modeling of powder, fluid and solid mechanics, heat transfer, microstructure evolutions, data-driven analysis, and a synergy of modeling with other techniques. Modeling of various additive manufacturing processes are included, such as laser/electron beam powder bed fusion, directed energy deposition, binder jetting, and material extrusion.
The book presents comprehensive simulations covering a variety of issues for the process-structure-property relationships, including:
This book is an essential first-of-its-kind reference for researchers in this specific area, and the larger area of additive manufacturing focusing on experiments, materials design, mechanics, and other areas of interest.
WENTAO YAN, PhD, is a Tenured Associate Professor in the Department of Mechanical Engineering at the National University of Singapore (NUS). Since 2014, he has been working on multi-scale multi-physics modeling, experimental investigation and data analysis of additive manufacturing. He has published >140 papers on flagship journals and his team was the winner in the 2022 NIST AM Bench Simulation Challenges, winning 9 awards in 25 tests.
YANMING ZHANG, PhD, is a Research Fellow in the Department of Mechanical Engineering at NUS. His research focuses on the multiphase flow modeling of multi-material additive manufacturing.
DAIJUN HU, PhD, is a Research Fellow in the Department of Mechanical Engineering at NUS. His research focuses on residual stress, dislocation dynamics and fracture, providing mechanistic insights into material behavior through computational modeling of additive manufacturing.
YUHAN JU is a PhD candidate in the Department of Mechanical Engineering at NUS. Her research focuses on the modeling of microstructure evolutions in additive manufacturing at grain and dendrite scales with the phase-field and cellular automaton methods.
YIMING LIU is a PhD student under the Integrative Sciences and Engineering Programme at NUS. His research focuses on data-driven modeling, diagnostics and close-loop control in additive manufacturing.
| Publication Date: | 29 September 2026 |
| Publisher: | Wiley |
| Imprint: | Wiley |
| ISBN-13: | 9781394351022 |
| Format: | Hardback |
| Page Count: | 480 |