The osseointegration of metallic implants depends on an effective balance among designed porosity to facilitate angiogenesis, tissue in-growth and bone-mimicking elastic modulus with good strength properties. While addressing such twin requirements, the present study demonstrates a low temperature additive manufacturing based processing strategy to fabricate Ti-6Al-4V scaffolds with designed porosity using inkjet-based 3D powder printing (3DPP). A novel starch-based aqueous binder was prepared and the physico-chemical parameters such as pH, viscosity, and surface tension were optimized for drop-on-demand (DOD) based thermal inkjet printing. Micro-computed tomography (micro-CT) of sintered scaffolds revealed a 57% total porosity in homogeneo...
Additive manufacturing of functional metallic parts based on layer-by-layer melting and solidificati...
Additive Manufacturing (AM) technologies had widely used in most of the application such as aeronaut...
This paper deals with powder processing of Ti6Al4V titanium alloy based materials with tailored poro...
The osseointegration of metallic implants depends on an effective balance among designed porosity to...
The elastic modulus of metallic orthopaedic implants is typically 6–12 times greater than cortical b...
Ti6Al4V components, for biomedical and aerospace sectors, are receiving a great interest especially ...
One of the important aspects in 3D powder printing (3DPP) is the selection of binder for a specific ...
The post-processing treatment plays an important role in tailoring the mechanical and biological pro...
Among additive manufacturing (AM) techniques, laser or electron beam based processes have been widel...
Porous metal structures have emerged as a promising solution in repairing and replacing damaged bone...
3D porous Ti6Al4V scaffolds were successfully directly fabricated by a rapid prototyping technology:...
Abstract Objective Mechanic strength, pore morphology and size are key factors for the three-dimensi...
Powder-based inkjet 3D printing method is one of the most attractive solid free form techniques. It ...
Porous Ti-6Al-4V alloys are attractive candidates as implant materials due to their good biocompatib...
We present a novel Ti64/20Ag highly porous composite fabricated by powder metallurgy for biomedical ...
Additive manufacturing of functional metallic parts based on layer-by-layer melting and solidificati...
Additive Manufacturing (AM) technologies had widely used in most of the application such as aeronaut...
This paper deals with powder processing of Ti6Al4V titanium alloy based materials with tailored poro...
The osseointegration of metallic implants depends on an effective balance among designed porosity to...
The elastic modulus of metallic orthopaedic implants is typically 6–12 times greater than cortical b...
Ti6Al4V components, for biomedical and aerospace sectors, are receiving a great interest especially ...
One of the important aspects in 3D powder printing (3DPP) is the selection of binder for a specific ...
The post-processing treatment plays an important role in tailoring the mechanical and biological pro...
Among additive manufacturing (AM) techniques, laser or electron beam based processes have been widel...
Porous metal structures have emerged as a promising solution in repairing and replacing damaged bone...
3D porous Ti6Al4V scaffolds were successfully directly fabricated by a rapid prototyping technology:...
Abstract Objective Mechanic strength, pore morphology and size are key factors for the three-dimensi...
Powder-based inkjet 3D printing method is one of the most attractive solid free form techniques. It ...
Porous Ti-6Al-4V alloys are attractive candidates as implant materials due to their good biocompatib...
We present a novel Ti64/20Ag highly porous composite fabricated by powder metallurgy for biomedical ...
Additive manufacturing of functional metallic parts based on layer-by-layer melting and solidificati...
Additive Manufacturing (AM) technologies had widely used in most of the application such as aeronaut...
This paper deals with powder processing of Ti6Al4V titanium alloy based materials with tailored poro...