We used selective laser melting (SLM) and hot pressing of mechanically-alloyed β-type Ti–40Nb powder to fabricate macroporous bulk specimens (solid cylinders). The total porosity, compressive strength, and compressive elastic modulus of the SLM-fabricated material were determined as 17% ± 1%, 968 ± 8 MPa, and 33 ± 2 GPa, respectively. The alloy’s elastic modulus is comparable to that of healthy cancellous bone. The comparable results for the hot-pressed material were 3% ± 2%, 1400 ± 19 MPa, and 77 ± 3 GPa. This difference in mechanical properties results from different porosity and phase composition of the two alloys. Both SLM-fabricated and hot-pressed cylinders demonstrated good in vitro biocompatibility. The presented results suggest th...
Titanium alloys are receiving a great deal of attention in both medical and dental applications. For...
As the number of orthopedic surgeries is increasing, so is the need for implants that not only can r...
As the global trauma fixation devices market expands rapidly, it is imperative to improve the produc...
We used selective laser melting (SLM) and hot pressing of mechanically-alloyed β-type Ti–40Nb powder...
Integrating porous networks in load-bearing implants is essential in order to improve mechanical com...
Titanium (Ti) based materials are deemed one type of the best metallic materials for biomedical appl...
The state-of-the-art alloys for load-bearing implant applications lack the necessary functional attr...
This PhD study firstly presents the results of using selective laser melting (SLM) to produce commer...
Titanium (Ti) based tissue engineering scaffolds can be used to repair damaged bone. However, succes...
The mechanical properties of new low-modulus beta titanium alloyed designed for biomedical applicati...
AbstractSelective laser melting (SLM) is a promising technique for the production of biometallic sca...
One of the most important factors for a successful performance of a load-bearing implant for hard ti...
Porous structures are used in orthopaedics to promote biological fixation between metal implant and ...
Commercially pure titanium (CP-Ti) and Ti–TiB composite parts with three different porosity levels (...
Selective laser melting (SLM) is an additive manufacturing (AM) technique that is capable of fabrica...
Titanium alloys are receiving a great deal of attention in both medical and dental applications. For...
As the number of orthopedic surgeries is increasing, so is the need for implants that not only can r...
As the global trauma fixation devices market expands rapidly, it is imperative to improve the produc...
We used selective laser melting (SLM) and hot pressing of mechanically-alloyed β-type Ti–40Nb powder...
Integrating porous networks in load-bearing implants is essential in order to improve mechanical com...
Titanium (Ti) based materials are deemed one type of the best metallic materials for biomedical appl...
The state-of-the-art alloys for load-bearing implant applications lack the necessary functional attr...
This PhD study firstly presents the results of using selective laser melting (SLM) to produce commer...
Titanium (Ti) based tissue engineering scaffolds can be used to repair damaged bone. However, succes...
The mechanical properties of new low-modulus beta titanium alloyed designed for biomedical applicati...
AbstractSelective laser melting (SLM) is a promising technique for the production of biometallic sca...
One of the most important factors for a successful performance of a load-bearing implant for hard ti...
Porous structures are used in orthopaedics to promote biological fixation between metal implant and ...
Commercially pure titanium (CP-Ti) and Ti–TiB composite parts with three different porosity levels (...
Selective laser melting (SLM) is an additive manufacturing (AM) technique that is capable of fabrica...
Titanium alloys are receiving a great deal of attention in both medical and dental applications. For...
As the number of orthopedic surgeries is increasing, so is the need for implants that not only can r...
As the global trauma fixation devices market expands rapidly, it is imperative to improve the produc...