AbstractAdditive Manufacturing technology, such as Selective Laser Melting, allows fabrication of complex metal parts with freeform surfaces. Using biocompatible metal alloys, e.g. TiAl6V4, medical implants can be produced. To increase osseointegrative behavior the ability to fabricate filigree lattice structures can be utilized to achieve a modified implant surface. In order to increase dimensional accuracy when applying a lattice structure on a curved surface, process constraints for single lattice bars are studied. The investigated lattice structure was thereupon applied on the surface of a medical implant
A broad range of synthetic trabecular-like metallic lattices are 3D printed, to study the extra desi...
The progress in additive manufacturing has remarkably increased the application of lattice materials...
A biomedical implant is a man-made transplanted device used to replace missing life structures and s...
AbstractAdditive Manufacturing technology, such as Selective Laser Melting, allows fabrication of co...
The call for orthopedic implants is a growing concern with a vastly enlarging elderly population and...
The call for orthopedic implants is a growing concern with an ever-rising aging population. Current ...
Selective laser melting (SLM) is one methodology to realize additive manufacturing and is mainly use...
Unlike conventional manufacturing techniques, additive manufacturing (AM) can form objects of comple...
AbstractCranial defect restoration requires a suitable implant capable to fulfill protective and aes...
The rise of antibiotic resistant bacterial species is driving the requirement for medical devices th...
Tissue engineering scaffolds serve as the defining structure for regenerating human tissues as well ...
La problématique initiale part du constat que les échecs d’implants sont souvent causés par une inad...
The mechanical properties and biocompatibility of titanium alloy medical devices and implants produc...
As the global trauma fixation devices market expands rapidly, it is imperative to improve the produc...
In recent years, digitizing and automation have gained an important place in fabrication of medical...
A broad range of synthetic trabecular-like metallic lattices are 3D printed, to study the extra desi...
The progress in additive manufacturing has remarkably increased the application of lattice materials...
A biomedical implant is a man-made transplanted device used to replace missing life structures and s...
AbstractAdditive Manufacturing technology, such as Selective Laser Melting, allows fabrication of co...
The call for orthopedic implants is a growing concern with a vastly enlarging elderly population and...
The call for orthopedic implants is a growing concern with an ever-rising aging population. Current ...
Selective laser melting (SLM) is one methodology to realize additive manufacturing and is mainly use...
Unlike conventional manufacturing techniques, additive manufacturing (AM) can form objects of comple...
AbstractCranial defect restoration requires a suitable implant capable to fulfill protective and aes...
The rise of antibiotic resistant bacterial species is driving the requirement for medical devices th...
Tissue engineering scaffolds serve as the defining structure for regenerating human tissues as well ...
La problématique initiale part du constat que les échecs d’implants sont souvent causés par une inad...
The mechanical properties and biocompatibility of titanium alloy medical devices and implants produc...
As the global trauma fixation devices market expands rapidly, it is imperative to improve the produc...
In recent years, digitizing and automation have gained an important place in fabrication of medical...
A broad range of synthetic trabecular-like metallic lattices are 3D printed, to study the extra desi...
The progress in additive manufacturing has remarkably increased the application of lattice materials...
A biomedical implant is a man-made transplanted device used to replace missing life structures and s...