The demand for implants with individual shape requires the development of new methods and approaches to their production. The obvious advantages of additive technologies and selective laser sintering are the capabilities to form both the external shape of the product and its internal structure. Recently appeared and attractive from the perspective of biomechanical compatibility are beta alloys of titanium-niobium that have similar mechanical properties to those of cortical bone. This paper studies the processes occurring at different stages of laser sintering using computer simulation on atomic scale. The effect of cooling rate on the resulting crystal structure of Ti-Nb alloy was analysed. Also, the dependence of tensile strength of sinter...
Objectives This work focuses on a titanium alloy implants incorporating a gradient of porosity, from...
Selective laser melting (SLM) is a promising technique capable of rapidly fabricating customized imp...
The influence of laser processing parameters on mechanical properties and microstructure of pure ti...
Alloys based on the titanium-niobium system are widely used in implant production. It is conditional...
Direct Metal Laser Sintering has attracted much attention over the last decade for producing complex...
A multilevel approach is used to numerically investigate physical and mechanical properties of titan...
Over recent years there has been a push to develop Titanium (Ti) implants with a customised compress...
The microstructure and material properties of near-infrared pulsed laser sintered titanium have been...
A titanium-niobium (Ti-Nb) alloy with tailored microstructures, enhanced mechanical properties and b...
The article presents a numerical simulation of the mechanical properties of a Ti-Nb β-alloy on three...
Ti-45Nb is one of the potential alloys that can be applied for biomedical applications as implants d...
Ti–Nb alloys are excellent candidates for biomedical applications such as implantology and joint rep...
Alloying titanium (Ti) with niobium (Nb) offers the possibility to develop a low-stiffness, high- st...
Abstract: Titanium and its alloys are regarded as super alloys because of their ability to maintain ...
This PhD study firstly presents the results of using selective laser melting (SLM) to produce commer...
Objectives This work focuses on a titanium alloy implants incorporating a gradient of porosity, from...
Selective laser melting (SLM) is a promising technique capable of rapidly fabricating customized imp...
The influence of laser processing parameters on mechanical properties and microstructure of pure ti...
Alloys based on the titanium-niobium system are widely used in implant production. It is conditional...
Direct Metal Laser Sintering has attracted much attention over the last decade for producing complex...
A multilevel approach is used to numerically investigate physical and mechanical properties of titan...
Over recent years there has been a push to develop Titanium (Ti) implants with a customised compress...
The microstructure and material properties of near-infrared pulsed laser sintered titanium have been...
A titanium-niobium (Ti-Nb) alloy with tailored microstructures, enhanced mechanical properties and b...
The article presents a numerical simulation of the mechanical properties of a Ti-Nb β-alloy on three...
Ti-45Nb is one of the potential alloys that can be applied for biomedical applications as implants d...
Ti–Nb alloys are excellent candidates for biomedical applications such as implantology and joint rep...
Alloying titanium (Ti) with niobium (Nb) offers the possibility to develop a low-stiffness, high- st...
Abstract: Titanium and its alloys are regarded as super alloys because of their ability to maintain ...
This PhD study firstly presents the results of using selective laser melting (SLM) to produce commer...
Objectives This work focuses on a titanium alloy implants incorporating a gradient of porosity, from...
Selective laser melting (SLM) is a promising technique capable of rapidly fabricating customized imp...
The influence of laser processing parameters on mechanical properties and microstructure of pure ti...