Particle-based numerical methods enable different process simulations for powder bed additive manufacturing. Two examples are the simulation of powder spreading and the simulation of melting and re-solidification. From these simulations, several material properties can be extracted such as packing density after spreading, porosity and surface properties after re-solidification and, ultimately, indicators for the strength of the component. In this work simulations of powder spreading using the Discrete Element Method (DEM) as well as simulations of the melt pool dynamics by means of SmoothedParticle Hydrodynamics (SPH) are presented. Surface tension material properties are varied and the influence on the resulting surface shape is discussed....
Laser powder bed fusion additive manufacturing is among the most used industrial processes, allowing...
A new multi-stage three-dimensional transient computational model to simulate powder bed fusion (L-P...
Part of the optimization steps for additive manufacturing is related to the correct understanding of...
Particle-based numerical methods enable different process simulations for powder bed additive manufa...
Particle-based numerical methods enable different process simulations for powder bed additive manufa...
Additive manufacturing processes currently penetrate both science and industry. These methods provid...
AbstractPowders used in additive manufacturing (AM) are spread onto a compact layer of particles for...
Additive manufacturing (AM) or 3D printing is beginning to mature from a rapid prototyping to an ind...
This is the author accepted manuscript, published online 9th November 2016. The manuscript will unde...
The powder bed fusion (PBF) process is widely adopted in many manufacturing industries because of it...
In powder based Additive Manufacturing (AM) a uniform and compact spread of particles is required wh...
In selective laser melting in additive manufacturing, powder spreading significantly affects the sub...
International audienceThe aim of this work is to understand the granular behavior of metal powder du...
Selective laser melting (SLM) process is a powder bed fusion additive manufacturing process that fin...
Selective laser melting process is a powder bed fusion additive manufacturing process that finds app...
Laser powder bed fusion additive manufacturing is among the most used industrial processes, allowing...
A new multi-stage three-dimensional transient computational model to simulate powder bed fusion (L-P...
Part of the optimization steps for additive manufacturing is related to the correct understanding of...
Particle-based numerical methods enable different process simulations for powder bed additive manufa...
Particle-based numerical methods enable different process simulations for powder bed additive manufa...
Additive manufacturing processes currently penetrate both science and industry. These methods provid...
AbstractPowders used in additive manufacturing (AM) are spread onto a compact layer of particles for...
Additive manufacturing (AM) or 3D printing is beginning to mature from a rapid prototyping to an ind...
This is the author accepted manuscript, published online 9th November 2016. The manuscript will unde...
The powder bed fusion (PBF) process is widely adopted in many manufacturing industries because of it...
In powder based Additive Manufacturing (AM) a uniform and compact spread of particles is required wh...
In selective laser melting in additive manufacturing, powder spreading significantly affects the sub...
International audienceThe aim of this work is to understand the granular behavior of metal powder du...
Selective laser melting (SLM) process is a powder bed fusion additive manufacturing process that fin...
Selective laser melting process is a powder bed fusion additive manufacturing process that finds app...
Laser powder bed fusion additive manufacturing is among the most used industrial processes, allowing...
A new multi-stage three-dimensional transient computational model to simulate powder bed fusion (L-P...
Part of the optimization steps for additive manufacturing is related to the correct understanding of...