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Naji, M. |
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Motta, Antonella |
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Aletan, Dirar |
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Mohamed, Tarek |
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Ertürk, Emre |
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Taccardi, Nicola |
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Kononenko, Denys |
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Petrov, R. H. | Madrid |
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Alshaaer, Mazen | Brussels |
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Bih, L. |
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Casati, R. |
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Muller, Hermance |
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Kočí, Jan | Prague |
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Šuljagić, Marija |
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Kalteremidou, Kalliopi-Artemi | Brussels |
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Azam, Siraj |
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Ospanova, Alyiya |
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Blanpain, Bart |
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Ali, M. A. |
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Popa, V. |
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Rančić, M. |
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Ollier, Nadège |
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Azevedo, Nuno Monteiro |
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Landes, Michael |
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Rignanese, Gian-Marco |
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Pedersen, David Bue
Technical University of Denmark
in Cooperation with on an Cooperation-Score of 37%
Topics
Publications (81/81 displayed)
- 2024Performance evaluation of polymer-filled metal fused filament fabrication tooling for profile extrusioncitations
- 2024Applying systems engineering principles to develop an open source laser based metal powder bed fusion systemcitations
- 2024Integration of soft tooling by additive manufacturing in polymer profile extrusion process chain
- 2024Optimizing TPU performance: The role of mold temperature on injection molding of TPUcitations
- 2023Experimental testing and characterization of additively manufactured CF-PEEK dies for complex profile in polymer profile extrusion
- 2023Preliminary geometric tests of an open-source metal laser powder bed fusion system
- 2023Simple sensor manufacturing by Laser Powder Bed Fusion of conductive polymer blends
- 2023Effect of heat treatment processes on the microstructure and mechanical properties of spray-formed 440C martensitic stainless steelcitations
- 2023Surface Roughness and Grain Size Variation When 3D Printing Polyamide 11 Parts Using Selective Laser Sinteringcitations
- 2023The effect of layer height and post-curing temperature on the shape memory properties of smart polymers in vat photopolymerizationcitations
- 2023Flow simulation and experimental validation of polymer extrusion using additively manufactured carbon fiber reinforced PEEK dies
- 2023Additive manufacturing in polymer extrusion tooling: experimental testing and surface characterization
- 2023Influence of surface roughness parameters of additively manufactured die on the extrudates in polymer extrusion
- 2023Experimental Analysis and Spatial Component Impact of the Inert Cross Flow in Open-Architecture Laser Powder Bed Fusioncitations
- 2022Additive Manufacturing of High-Resolution PZT Components: Slurry development, Characterization, Design, and Fabrication
- 2022Evaluating the scalability of channels made by Binder Jetting and Laser Powder Bed Fusion using an X-ray CT and image analysis approach
- 2022Numerical Predictions of Bottom Layer Stability in Material Extrusion Additive Manufacturingcitations
- 2022Modelling and Validation of Selective Laser Sintering of PA12
- 2022Chamber Heat Calibration by Emissivity Measurements in an Open Source SLS System
- 2022Powder manufacturing for powder metallurgy
- 2022Effective polishing of inner surfaces of additive manufactured inserts for polymer extrusion using Plasma Electrolytic Polishing
- 2022Powder-based additive manufacturing of high-nitrogen stainless steels and austenitic nickel alloys
- 2022Powder-based additive manufacturing of high-nitrogen stainless steels and austenitic nickel alloys
- 2022A Numerical Investigation of the Inter-Layer Bond and Surface Roughness during the Yield Stress Buildup in Wet-On-Wet Material Extrusion Additive Manufacturing
- 2022Process optimisation of PA11 in fiber-laser powder-bed fusion through loading of an optical absorber
- 2021Densification, microstructure, and mechanical properties of heat-treated MAR-M247 fabricated by Binder Jettingcitations
- 2021Stability and deformations of deposited layers in material extrusion additive manufacturingcitations
- 2021Interface engineering of functionally graded steel-steel composites by laser powder bed fusioncitations
- 2021In-situ interstitial alloying during laser powder bed fusion of AISI 316 for superior corrosion resistancecitations
- 2021In-situ interstitial alloying during laser powder bed fusion of AISI 316 for superior corrosion resistancecitations
- 2021Additive manufacturing of soft tools – Application of carbon fiber filled PEEK to polymer extrusion dies production
- 2021On the role of the powder stream on the heat and fluid flow conditions during Directed Energy Deposition of maraging steel - Multiphysics modelling and experimental validationcitations
- 2021Enabling micro injection moulding using a soft tooling process chain with inserts made of mortar materialcitations
- 2021Additive Manufacturing of Functional Metalscitations
- 2021A fundamental investigation of thermo-capillarity in laser powder bed fusion of metals and alloyscitations
- 2021Rheological characterization of 3D printable geopolymerscitations
- 2020Dimensional Evaluation of Additive Manufactured Polymer Extrusion Dies Produced by Continuous Liquid Interface Production
- 2020Influence of Fibers on the Flow Through the Hot-End in Material Extrusion Additive Manufacturingcitations
- 2020Influence of Fibers on the Flow Through the Hot-End in Material Extrusion Additive Manufacturingcitations
- 2020Implications of lattice structures on economics and productivity of metal powder bed fusioncitations
- 2020Towards the integration of additively manufactured photopolymer dies in the polymer profile extrusion process chaincitations
- 2020On the implementation of metal additive manufacturing in the tooling process chain for polymer profile extrusioncitations
- 2020Mechanical properties of additively manufactured die with numerical analysis in extrusion processcitations
- 2020Characterization of channels made by laser powder bed fusion and binder jetting using X-ray CT and image analysiscitations
- 2020Microstructure Control in 3D Printing with Digital Light Processingcitations
- 2019Strain gauge filament for extrusion based additive manufacturing
- 2019Influence of atmosphere on microstructure and nitrogen content in AISI 316L fabricated by laser‐based powder bed fusion
- 2019Influence of atmosphere on microstructure and nitrogen content in AISI 316L fabricated by laser‐based powder bed fusion
- 20193d Printed Mold for Powder Injection Molding Process
- 20193d Printed Mold for Powder Injection Molding Process
- 2019Value chain and production cost optimization by integrating additive manufacturing in injection molding process chaincitations
- 2019A method for identification and quantification of thermal lensing in powder bed fusion
- 2019Multi-material additive manufacturing of steels using laser powder bed fusion
- 2018Thermal behaviour of additively manufactured injection moulding inserts
- 2018A Soft Tooling Process Chain for Injection Molding of a 3D Component with Micro Pillarscitations
- 2018Numerical prediction of the porosity of parts fabricated with fused deposition modeling
- 2018A 5D DoF Parallel Kinematic Controler For Big Area Additive Manufacturing
- 2018Numerical Modeling of the Material Deposition and Contouring Precision in Fused Deposition Modeling
- 2018Flow Characteristics of a Thermoset Fiber Composite Photopolymer Resin in a Vat Polymerization Additive Manufacturing Processcitations
- 2018A Beam Modulator and Galvanometer Controller for Metal Powder Bed Fusion
- 2018A Beam Modulator and Galvanometer Controller for Metal Powder Bed Fusion
- 2018Numerical Study of the Impact of Shear Thinning Behaviour on the Strand Deposition Flow in the Extrusion-Based Additive Manufacturing
- 2018Evolution of Additively Manufactured Injection Molding Inserts Investigated by Thermal Simulationscitations
- 2018Internal Fiber Structure of a High-Performing, Additively Manufactured Injection Molding Insertcitations
- 2017Rheology of high melt strength polypropylene for additive manufacturingcitations
- 2017Performance Simulation and Verification of Vat Photopolymerization Based, Additively Manufactured Injection Molding Inserts with Micro-Featurescitations
- 2017Performance Simulation and Verification of Vat Photopolymerization Based, Additively Manufactured Injection Molding Inserts with Micro-Featurescitations
- 2017Integration of Fiber-Reinforced Polymers in a Life Cycle Assessment of Injection Molding Process Chains with Additive Manufacturingcitations
- 2017Life Cycle Assessment of Fiber-Reinforced Additive Manufacturing for Injection Molding Insert Production
- 2017Dimensional accuracy of Acrylonitrile Butadiene Styrene injection molded parts produced in a pilot produc
- 2017Considerations on the Construction of a Powder Bed Fusion Platform for Additive Manufacturingcitations
- 2017Applications of Fiber-Reinforced Polymers in Additive Manufacturingcitations
- 2017Biological features produced by additive manufacturing processes using vat photopolymerization method
- 2017Biological features produced by additive manufacturing processes using vat photopolymerization method
- 2016Rheology of High-Melt-Strength Polypropylene for Additive Manufacturing
- 2016Distribution and Orientation of Carbon Fibers in Polylactic Acid Parts Produced by Fused Deposition Modeling
- 2016Distribution and Orientation of Carbon Fibers in Polylactic Acid Parts Produced by Fused Deposition Modeling
- 2016Comparison of conventional Injection Mould Inserts to Additively Manufactured Inserts using Life Cycle Assessment
- 2014Development of a Parafin Wax deposition Unit for Fused Deposition Modelling (FDM)
- 2013In-process 3D geometry reconstruction of objects produced by direct light projectioncitations
- 2010In-line monitoring and reverse 3D model reconstruction in additive manufacturing
Places of action
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booksection
Additive Manufacturing of Functional Metals
Abstract
Additive manufacturing (AM) technologies comprise a family of manufacturing methods that colloquially are known by the common appellation of “3D Printing.” AM has created a strong linkage between digital and physical manufacturing, thus nourishing by its nature, a wider trend, digitization, and the automation of the manufacturing industry. This chapter presents an overview of the gross elements for a generic AM process. Industrial applications of functional metal. AM components can be found across various sectors including nuclear power, oil & gas, turbine components, wind & tidal energy, fuel cell components, and electromagnetic energy. AM lends increased design freedom for the manufacturing of unique functional geometries. AM processes on account of being a selective consolidation based manufacturing processes offer tremendous flexibility in functional material gradients. Powder bed fusion refers to a class of AM processes. Solid-state AM is a class of processes that use friction and diffusion-based mechanisms to produce mechanical bonding without melting.