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Progress in Powder Based Additive Manufacturing

Progress in Powder Based Additive Manufacturing

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This open access book presents 12 years of cutting-edge research on additive manufacturing (AM), with a focus on innovative powder- and beam-based techniques. Developed through the Collaborative Research Center 814 at Friedrich-Alexander-Universität Erlangen-Nürnberg, it explores the use of laser and electron beams in transforming metal and polymer materials. From advanced strategies for selective laser melting to mesoscopic simulations of beam melting processes, this book offers a deep dive into the science behind AM. Key topics include the development of lightweight composite materials, efficient multi-material manufacturing, and optimal design of multifunctional hybrid components. Readers will also discover pioneering approaches to selective electron beam melting, reactive liquid systems for plastics, and tailored material characterization techniques. In addition, the book explores macroscopic modeling and geometric testing methods, offering new insights into the future of AM technologies. By combining theoretical advancements with practical applications, this volume serves as an essential resource for researchers and professionals in the field of additive manufacturing.

This book is included in DOAB.

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This work has been downloaded 6 times via unglue.it ebook links.
  1. 6 - pdf (CC BY) at OAPEN Library.

Keywords

  • Additive Manufacturing Measurement Techniques
  • Additive Manufacturing Research
  • Electron Beam Melting Strategies
  • Functional Polymer Materials AM
  • Gas-Phase Powder Modification
  • Hybrid Components Additive Manufacturing
  • Hybrid Lattice Design AM
  • Laser Beam Melting Research
  • Laser Electron Beam Manufacturing
  • Laser Melting Plastics
  • Macroscale Modeling Selective Melting
  • Mesoscopic Simulation Additive Manufacturing
  • Metal and Polymer Additive Manufacturing
  • Metallic Components AM Simulation
  • multi-material additive manufacturing
  • Powder and Beam AM
  • Reactive Liquid Systems in AM
  • Selective Laser Melting Composites

Links

DOI: 10.1007/978-3-031-78350-0

Editions

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