Pages that link to "Item:Q2020798"
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The following pages link to Simulations of laser assisted additive manufacturing by smoothed particle hydrodynamics (Q2020798):
Displaying 9 items.
- Numerical simulation of laser fusion additive manufacturing processes using the SPH method (Q1986616) (← links)
- An improved recoil pressure boundary condition for the simulation of deep penetration laser beam welding using the SPH method (Q2085596) (← links)
- An enhanced implicit viscosity ISPH method for simulating free-surface flow coupled with solid-liquid phase change (Q2112522) (← links)
- A novel smoothed particle hydrodynamics formulation for thermo-capillary phase change problems with focus on metal additive manufacturing melt pool modeling (Q2236959) (← links)
- Laser-induced heating of dynamic particulate depositions in additive manufacturing (Q2310704) (← links)
- An efficient and high-fidelity local multi-mesh finite volume method for heat transfer and fluid flow problems in metal additive manufacturing (Q2678540) (← links)
- A multi-physics material point method for thermo-fluid-solid coupling problems in metal additive manufacturing processes (Q6084429) (← links)
- An adaptive smoothed particle hydrodynamics (SPH) scheme for efficient melt pool simulations in additive manufacturing (Q6161528) (← links)
- A novel smoothed particle hydrodynamics method for multi-physics simulation of laser powder bed fusion (Q6661925) (← links)