Reprint

Modeling, Simulation and Data Processing for Additive Manufacturing

Edited by
January 2022
250 pages
  • ISBN978-3-0365-2949-3 (Hardback)
  • ISBN978-3-0365-2948-6 (PDF)

This book is a reprint of the Special Issue Modeling, Simulation and Data Processing for Additive Manufacturing that was published in

Chemistry & Materials Science
Engineering
Physical Sciences
Summary

Additive manufacturing (AM) or, more commonly, 3D printing is one of the fundamental elements of Industry 4.0. and the fourth industrial revolution. It has shown its potential example in the medical, automotive, aerospace, and spare part sectors. Personal manufacturing, complex and optimized parts, short series manufacturing and local on-demand manufacturing are some of the current benefits. Businesses based on AM have experienced double-digit growth in recent years. Accordingly, we have witnessed considerable efforts in developing processes and materials in terms of speed, costs, and availability. These open up new applications and business case possibilities all the time, which were not previously in existence. Most research has focused on material and AM process development or effort to utilize existing materials and processes for industrial applications. However, improving the understanding and simulation of materials and AM process and understanding the effect of different steps in the AM workflow can increase the performance even more. The best way of benefit of AM is to understand all the steps related to that—from the design and simulation to additive manufacturing and post-processing ending the actual application.The objective of this Special Issue was to provide a forum for researchers and practitioners to exchange their latest achievements and identify critical issues and challenges for future investigations on “Modeling, Simulation and Data Processing for Additive Manufacturing”. The Special Issue consists of 10 original full-length articles on the topic.

Format
  • Hardback
License
© 2022 by the authors; CC BY-NC-ND license
Keywords
selective laser melting; finite element analysis; thermodynamic behavior; substrate preheating; scanning strategy; 24CrNiMo alloy steel; additive manufacturing; rapid manufacturing; rapid prototyping; 3D printing; medical; implants; dental; processes; methods; clinical; laser additive manufacturing; Inconel 718; pure Ti; finite element modeling; melt-pool formation; thermo-mechanical modelling; finite element analysis; residual stresses; microstructure; Ti-6Al-4V; acoustics; porous materials; material extrusion; design for additive manufacturing; sound absorption; artificial neural network; machine learning; additive manufacturing; quality control management; process optimization; computing techniques; ICT systems; laser powder bed fusion (LPBF); benchmark test artifact; numerical simulations; dimensional metrology; geometric dimensioning and tolerancing (GD&T); selective laser melting (SLM); lattice structure; bimetallic composite; mechanical properties; finite element analysis (FEA); digital image correlation (DIC); hybrid manufacturing; inconel 625; additive manufacturing; EDS microanalysis; automatic image analysis; laser melting; laser sintering; 3D printing; AlSi10Mg; PA12; Round-Robin; n/a