In this paper, discrete element method simulations were used to study the spreading of an idealised, blade based, powder coating system representative of the spreading of spherical, mono-sized, non-cohesive titanium alloy (Ti6AlV4) particles in additive layer manufacturing applications. A vertical spreader blade was used to accelerate a powder heap across a horizontal surface, with a thin gap between the blade and the surface, resulting in the deposition of a thin powder layer. The results showed that it is inevitable to deposit a powder layer with a lower packing fraction than the initial powder heap due to three mechanisms: shear-induced dilation during the initiation of powder motion by the spreader; dilation and rearrangement due to pow...
The metal powder-bed AM process involves two main steps: the spreading of powder layer and selectiv...
Additive manufacturing (AM) or 3D printing is beginning to mature from a rapid prototyping to an ind...
The metal powder-bed AM process involves two main steps: the spreading of powder layer and selectiv...
AbstractPowders used in additive manufacturing (AM) are spread onto a compact layer of particles for...
This is the author accepted manuscript, published online 9th November 2016. The manuscript will unde...
Powders used in additive manufacturing (AM) are spread into a compact layer of particles for sinteri...
Additive manufacturing (AM) has attracted increasing attention in a wide range of applications, due ...
Additive Manufacturing (AM) using powder spreading requires uniform spreading. For narrow spreader g...
AbstractPowders used in additive manufacturing (AM) are spread onto a compact layer of particles for...
Particle properties play a key role in determining the flowability of cohesive fine powders and cons...
Powder spreading in Additive Manufacturing (AM) has been analysed extensively by the Discrete Elemen...
In powder based Additive Manufacturing (AM) a uniform and compact spread of particles is required wh...
The quality of powder layers, specifically their packing density and surface uniformity, is a critic...
In selective laser melting in additive manufacturing, powder spreading significantly affects the sub...
Powders used in Particle Bed Fusion (PBF) process are spread onto compact layers and then are sinter...
The metal powder-bed AM process involves two main steps: the spreading of powder layer and selectiv...
Additive manufacturing (AM) or 3D printing is beginning to mature from a rapid prototyping to an ind...
The metal powder-bed AM process involves two main steps: the spreading of powder layer and selectiv...
AbstractPowders used in additive manufacturing (AM) are spread onto a compact layer of particles for...
This is the author accepted manuscript, published online 9th November 2016. The manuscript will unde...
Powders used in additive manufacturing (AM) are spread into a compact layer of particles for sinteri...
Additive manufacturing (AM) has attracted increasing attention in a wide range of applications, due ...
Additive Manufacturing (AM) using powder spreading requires uniform spreading. For narrow spreader g...
AbstractPowders used in additive manufacturing (AM) are spread onto a compact layer of particles for...
Particle properties play a key role in determining the flowability of cohesive fine powders and cons...
Powder spreading in Additive Manufacturing (AM) has been analysed extensively by the Discrete Elemen...
In powder based Additive Manufacturing (AM) a uniform and compact spread of particles is required wh...
The quality of powder layers, specifically their packing density and surface uniformity, is a critic...
In selective laser melting in additive manufacturing, powder spreading significantly affects the sub...
Powders used in Particle Bed Fusion (PBF) process are spread onto compact layers and then are sinter...
The metal powder-bed AM process involves two main steps: the spreading of powder layer and selectiv...
Additive manufacturing (AM) or 3D printing is beginning to mature from a rapid prototyping to an ind...
The metal powder-bed AM process involves two main steps: the spreading of powder layer and selectiv...