Thermomechanical finite element simulations of selective electron beam melting processes: performance considerations
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- Type
- article
- Published
- 2014-05-14
- Cited by
- 53
- References
- 24
- OpenAlex
- https://openalex.org/W1980518455
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:120516496
Keywords
Adiabatic process, Nonlinear system, Finite element method, Coupling (piping), Solver
References
- Stability analysis of finite difference schemes revisited: A study of decoupled solution strategies for coupled multifield problems
- Study of the consolidation process under macro- and microscopic thermal effects in selective laser sintering and selective laser melting
- 3D FE simulation for temperature evolution in the selective laser sintering process
- Numerical modelling of welding
- Investigations on residual stresses and deformations in selective laser melting
- Cellular Titanium by Selective Electron Beam Melting
- Cellular Ti-6Al-4V structures with interconnected macro porosity for bone implants fabricated by selective electron beam melting.
- Advances in modeling the effects of selected parameters on the SLS process
- Associative coupled thermoplasticity at finite strain with temperature-dependent material parameters
- Binding Mechanisms in Selective Laser Sintering and Selective Laser Melting
- Mesoscopic simulation of selective beam melting processes
- Thermal and mechanical finite element modeling of laser forming from metal and ceramic powders
- Associated coupled thermoplasticity at finite strains: formulation, numerical analysis and implementation
- Three-dimensional transient finite element analysis of the selective laser sintering process
- Partitioned analysis of coupled mechanical systems
- Residual stresses in selective laser sintering and selective laser melting
- Computational aspects of welding stress analysis
- Three-Dimensional Modeling of Selective Laser Sintering of Two-Component Metal Powder Layers
- Thermoelastic frictional contact problems: Modelling, finite element approximation and numerical realization
- Selective laser melting of iron-based powder
Cited by
- Simulation of metallic powder bed additive manufacturing processes with the finite element method: A critical review
- Multiscale Modeling of Powder Bed–Based Additive Manufacturing
- Macroscopic simulation and experimental measurement of melt pool characteristics in selective electron beam melting of Ti-6Al-4V
- Understanding the effect of laser scan strategy on residual stress in selective laser melting through thermo-mechanical simulation
- Fabrication assistée par ordinateur pour le procédé EBM
- Reduced‐order modelling for linear heat conduction with parametrised moving heat sources
- Overview on Additive Manufacturing Technologies
- Laser based additive manufacturing in industry and academia
- Computationally efficient finite difference method for metal additive manufacturing: A reduced-order DFAM tool applied to SLM
- Thermophysical Phenomena in Metal Additive Manufacturing by Selective Laser Melting: Fundamentals, Modeling, Simulation and Experimentation
- Additive manufacturing of metallic components – Process, structure and properties
- A hierarchical computational model for moving thermal loads and phase changes with applications to selective laser melting
- A survey of finite element analysis of temperature and thermal stress fields in powder bed fusion Additive Manufacturing
- Towards the simulation of Selective Laser Melting processes via phase transformation models
- Capillary viscous flow and melting dynamics: Coupled simulations for additive manufacturing applications
- Effect of process parameters on melt pool geometry and microstructure development for electron beam melting of IN718: A systematic single bead analysis study
- Slice2mesh: Meshing Sliced Data for the Simulation of AM Processes
- slice2mesh: A meshing tool for the simulation of additive manufacturing processes
- Numerical simulation of keyhole morphology and molten pool flow behavior in aluminum alloy electron-beam welding
- Use of cellular automata-based methods for understanding material-process-microstructure relations in alloy-based additive processes
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