Minerals and Mining.Titanium and its alloys may be processed via additive manufacturing techniques such as electron beam melting (EBM).This field is receiving increased attention from various manufacturing sectors including the medical devices sector. While the economic and engineering potential of EBM for the manufacture of musculo-skeletal implants is clear, the impact on the biocompatibility of the materials has been less investigated. In this study, the effects of part orientation-induced surface modifications on the in vitro biocompatibility of the EBM Ti6Al4V alloy were investigated. The study assessed the suitability of three different Ti6Al4V surfaces produced via the EBM process as variables for proliferation and attachment of mous...
This work aimed to comprehensively assess the influence of various surface modifications on the form...
Electron beam melting (EBM), a powder bed fusion based additive manufacturing process, has been used...
Electron beam melting (EBM) and selective laser melting (SLM) are two advanced rapid prototyping man...
Titanium and its alloys may be processed via additive manufacturing techniques such as Electron Beam...
Additive manufacturing of lightweight or functional structures by selective laser beam (SLM) or elec...
Electron Beam Melting (EBM) is an emerging additive manufacturing technique for the fabrication of t...
Custom-designed patient-specific implants and reconstruction plates are to date commonly manufacture...
BACKGROUND: High strength porous titanium implants are widely used for the reconstruction of craniof...
Additive Manufacturing (AM) methods are generally used to produce an early sample or near net-shape ...
The healthcare socio-economic environment is irreversibly changing as a consequence of an increasing...
High strength porous titanium implants are widely used for the reconstruction of craniofacial defect...
Titanium-based implants possessing adequately low elasticity modulus and customdesigned structures a...
Titanium and its alloys especially Ti-6Al-4V is an attractive biomaterial due to their excellent bio...
The high performance of bone implants depends on the positive response of osteoblasts to the surface...
Developing patient-specific biomedical implants for clinical application requires the integration of...
This work aimed to comprehensively assess the influence of various surface modifications on the form...
Electron beam melting (EBM), a powder bed fusion based additive manufacturing process, has been used...
Electron beam melting (EBM) and selective laser melting (SLM) are two advanced rapid prototyping man...
Titanium and its alloys may be processed via additive manufacturing techniques such as Electron Beam...
Additive manufacturing of lightweight or functional structures by selective laser beam (SLM) or elec...
Electron Beam Melting (EBM) is an emerging additive manufacturing technique for the fabrication of t...
Custom-designed patient-specific implants and reconstruction plates are to date commonly manufacture...
BACKGROUND: High strength porous titanium implants are widely used for the reconstruction of craniof...
Additive Manufacturing (AM) methods are generally used to produce an early sample or near net-shape ...
The healthcare socio-economic environment is irreversibly changing as a consequence of an increasing...
High strength porous titanium implants are widely used for the reconstruction of craniofacial defect...
Titanium-based implants possessing adequately low elasticity modulus and customdesigned structures a...
Titanium and its alloys especially Ti-6Al-4V is an attractive biomaterial due to their excellent bio...
The high performance of bone implants depends on the positive response of osteoblasts to the surface...
Developing patient-specific biomedical implants for clinical application requires the integration of...
This work aimed to comprehensively assess the influence of various surface modifications on the form...
Electron beam melting (EBM), a powder bed fusion based additive manufacturing process, has been used...
Electron beam melting (EBM) and selective laser melting (SLM) are two advanced rapid prototyping man...