Emerging Materials for Additive Manufacturing

In this reprint, state-of-the-art research and review articles on emerging material systems for additive manufacturing (AM) are collected, with a focus on the process-structure-properties relationships. Additive manufacturing (AM) has grown and evolved rapidly in recent years. There are many excitin...

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Bibliographic Details
Other Authors: Sing, Swee Leong (Editor), Yeong, Wai Yee (Editor)
Format: Electronic Book Chapter
Language:English
Published: Basel MDPI - Multidisciplinary Digital Publishing Institute 2023
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Online Access:DOAB: download the publication
DOAB: description of the publication
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520 |a In this reprint, state-of-the-art research and review articles on emerging material systems for additive manufacturing (AM) are collected, with a focus on the process-structure-properties relationships. Additive manufacturing (AM) has grown and evolved rapidly in recent years. There are many exciting research and translational works in many areas of application, such as biomedical, aerospace and electronics. These advancements are typically coupled with materials development, which has resulted in more functionalities added to 3D-printed parts, such as multi-material fabrications and integration with machine learning or digital twins. Such enhancements in functionalities have enabled the evolution of AM from a rapid prototyping tool to an actual manufacturing solution. In this reprint, two reviews and thirteen original research articles are included to highlight the latest development in the field of materials science for AM. 
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653 |a titanium scaffolds 
653 |a 3D printing 
653 |a pore design 
653 |a selective laser melting 
653 |a lattice structures 
653 |a torsion 
653 |a design 
653 |a additive manufacturing 
653 |a functionally gradient lattice 
653 |a torsional stiffness 
653 |a energy absorption 
653 |a failure behavior 
653 |a ferritic steel 
653 |a heat treatment 
653 |a SLM 
653 |a nuclear application 
653 |a laser powder bed fusion 
653 |a solidification crack 
653 |a hot crack 
653 |a aluminum alloy powder 
653 |a EN AW-5083 
653 |a AA5083 
653 |a AlSi10Mg 
653 |a powder bed fusion 
653 |a metal matrix composites 
653 |a laser powder-bed fusion 
653 |a aluminum alloys 
653 |a reinforcement 
653 |a ceramic particulates 
653 |a grain refinement 
653 |a crystallographic texture 
653 |a mechanical properties 
653 |a laser-directed energy deposition 
653 |a melt pool 
653 |a process maps 
653 |a multi-fidelity Gaussian process 
653 |a Bayesian Optimization 
653 |a uncertainty quantification 
653 |a K418 alloy 
653 |a orientation 
653 |a phase 
653 |a microhardness 
653 |a color 3D printing 
653 |a penetration depth 
653 |a chromaticity 
653 |a image-based metric 
653 |a color reproduction 
653 |a Ti-24Nb-4Zr-8Sn 
653 |a titanium alloy 
653 |a biomedical engineering 
653 |a microstructure 
653 |a X-ray diffraction 
653 |a directed energy deposition 
653 |a shape-memory alloys 
653 |a joining of metals 
653 |a elemental powders 
653 |a 3D concrete printing (3DCP) 
653 |a hybrids 
653 |a geopolymer 
653 |a frost resistance 
653 |a UV radiation 
653 |a thermal conductivity 
653 |a surface finishing 
653 |a physical vapor deposition 
653 |a composites 
653 |a recycling 
653 |a polymer-matrix composites (PMCs) 
653 |a direct ink writing 
653 |a liquid deposition modeling 
653 |a glass fibers 
653 |a stainless steel 
653 |a AISI 316L 
653 |a AISI 630 (17-4PH) 
653 |a AISI 420 
653 |a AISI 440C 
653 |a carbon content 
653 |a online monitoring 
653 |a electron beam melting 
653 |a n/a 
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