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Meeting MS&T25: Materials Science & Technology
Symposium Sintering and Related Powder Processing Science and Technologies
Presentation Title FAST/SPS: Industrial Post-process For Full Densification Of 3D Complex Shape From Sinter Based Additive Manufacturing Processes
Author(s) Arnaud Fregeac, Meyane Hurtault, Yannick Beynet, Romain Epherre
On-Site Speaker (Planned) Arnaud Fregeac
Abstract Scope Norimat has made an important industrial breakthrough by developing a simple process to densify 3D green parts from SBAM (Sinter Based Additive Manufacturing) processes using FAST/SPS. It allows to fully densify (porosity <1%) green parts from SBAM directly after printing in only one step and less than 1 or 2 hours of thermal treatment. The debinding of AM green parts has been optimised and is carried out in situ in the FAST/SPS process. This allows to limit the thermal treatment time and to improve the quality of the part in terms of chemistry, mechanical properties and deformation. This conference will focus on the progress made in the production of fully dense 3D complex shapes using FAST/SPS. An innovative and versatile approach combining additive manufacturing (SBAM, mainly binder jetting) and FAST/SPS will be presented, as well as original use cases with different UHTC and metallic materials for aerospace or defence applications.

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

Solid-state diffusion bonding for INCONEl 617 superalloy using field-assisted sintering technology (FAST) guided by CALPHAD approach
Advanced Manufacturing enabled by Spark Plasma Sintering
Convenient application of SPS in the understanding of fundamental kinetics and sintering behavior in ceramics
Development of a Proxy Molding Technique for Accelerated Binder Jet Printing Materials Optimization
Effect of High Pressure Spark Plasma Sintering on microstructure and properties of nano-structured magnesium aluminate spinel
Electro-Nano-Pulsing for Localized Grain Boundary Engineering and Quasi-Instantaneous Microstructural Control
Enabling Advanced Materials with Spark Plasma Sintering: From R&D to Scalable Production at California Nanotechnologies
Energy-efficient powder consolidation of Fe-Si magnetic composite via in-situ friction stir forging
Enhancing Polymer-Derived TiC/SiC Ceramics with MXene Reinforcements via Spark Plasma Sintering
FAST/SPS: Industrial Post-process For Full Densification Of 3D Complex Shape From Sinter Based Additive Manufacturing Processes
Fiber Reinforced Li2O-Fe Composites for Tritium Breeding Applications
Field-assisted sintering of ceramic carbides and borides
From Flash Sintering to Ultrafast Sintering without Electric Currents in Specimens
High-efficient sintering technologies for advanced energy materials
In-Situ TEM Study of Nanoscale Sintering and Phase Evolution in High-Entropy Alloy Nanoparticles
Influence of precursor chemistry and calcination temperatures on the phase purity and microstructure of gadolinium zirconate
Low-temperature rapid sintering for the fabrication of biphasic Si3N4 ceramics with outstanding mechanical properties
Simulating Powder Dynamics to Support Sintering Process Optimization in Powder Metallurgy
Sintering Behavior and Elastic Properties of SnO2 Ceramics: A Comparative Study of Conventional, Microwave, and Cold Sintering
Sintering of Binder Jetted Stainless Steel 316L Components: Dimensional and Geometrical Changes
Synergistic enhancement of mechanical and tribological properties of multiwalled carbon nanotubes reinforced Inconel 718 composites
Thermodynamic of solid-state sintering: contributions of grain boundary energy
Ultrafast high-temperature sintering of YSZ
Understanding particle packing through finite-size Lennard-Jones molecular dynamics
Uniform flash sintering of zirconia-based ceramics by compositional design

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