Unlike conventional manufacturing techniques, additive manufacturing (AM) can form objects of complex shape and geometry in an almost unrestricted manner. AM’s advantages include higher control of local process parameters and a possibility to use two or more various materials during manufacture. In this work, we applied one of AM technologies, selective laser melting, using Ti6Al7Nb alloy to produce biomedical functional structures (BFS) in the form of bone implants. Five types of BFS structures (A1, A2, A3, B, C) were manufactured for the research. The aim of this study was to investigate such technological aspects as architecture, manufacturing methods, process parameters, surface modification, and to compare them with such function...
Rapid advancements in science and technology have assured biomaterials and their associated fields t...
A biomedical implant is a man-made transplanted device used to replace missing life structures and s...
Selective laser melting (SLM) is a promising technique capable of rapidly fabricating customized imp...
Unlike conventional manufacturing techniques, additive manufacturing (AM) can form objects of comple...
As the global trauma fixation devices market expands rapidly, it is imperative to improve the produc...
The mechanical properties and biocompatibility of titanium alloy medical devices and implants produc...
Titanium (Ti) based tissue engineering scaffolds can be used to repair damaged bone. However, succes...
Cavitary bone defects are common in orthopedic surgery and may be present after curettage of benign ...
A broad range of synthetic trabecular-like metallic lattices are 3D printed, to study the extra desi...
Aim and Background: Scientific approach is the utilization of the new generative manufacturing proce...
The mechanical properties and biocompatibility of titanium alloy medical devices and implants produc...
Meeting the huge variety of patient’s needs is only partially possible with standard medical implant...
Integrating porous networks in load-bearing implants is essential in order to improve mechanical com...
Orthopedic implants are under incessant advancement to improve their interactions with surrounding b...
Additive Manufacturing (AM) methods are generally used to produce an early sample or near net-shape ...
Rapid advancements in science and technology have assured biomaterials and their associated fields t...
A biomedical implant is a man-made transplanted device used to replace missing life structures and s...
Selective laser melting (SLM) is a promising technique capable of rapidly fabricating customized imp...
Unlike conventional manufacturing techniques, additive manufacturing (AM) can form objects of comple...
As the global trauma fixation devices market expands rapidly, it is imperative to improve the produc...
The mechanical properties and biocompatibility of titanium alloy medical devices and implants produc...
Titanium (Ti) based tissue engineering scaffolds can be used to repair damaged bone. However, succes...
Cavitary bone defects are common in orthopedic surgery and may be present after curettage of benign ...
A broad range of synthetic trabecular-like metallic lattices are 3D printed, to study the extra desi...
Aim and Background: Scientific approach is the utilization of the new generative manufacturing proce...
The mechanical properties and biocompatibility of titanium alloy medical devices and implants produc...
Meeting the huge variety of patient’s needs is only partially possible with standard medical implant...
Integrating porous networks in load-bearing implants is essential in order to improve mechanical com...
Orthopedic implants are under incessant advancement to improve their interactions with surrounding b...
Additive Manufacturing (AM) methods are generally used to produce an early sample or near net-shape ...
Rapid advancements in science and technology have assured biomaterials and their associated fields t...
A biomedical implant is a man-made transplanted device used to replace missing life structures and s...
Selective laser melting (SLM) is a promising technique capable of rapidly fabricating customized imp...