When it comes to application of specific material properties, high accuracy and minimal rework of nano-metal components are the key elements for a sucessful process. The parts can be either produced by Laser melting, or by metal injection moulding, depending on the volumes oft he desired applications. These nanostructured materials are possible to produce on different material basis, however titanium is preferred. Both options are usable for medical parts. The technology is defined by the numbers of pieces which need to be produced.</p
Over the last three decades, Metal Injection Moulding (MIM) has become an increasingly important man...
Nanotechnology is an extremely powerful emerging technology, which is expected to have a substantial...
yesThe main approaches to the formation of modern functional materials for medical implants, includi...
When it comes to application of specific material properties, high accuracy and minimal rework of na...
Nanostructuring of titanium-based implantable devices can provide them with superior mechanical prop...
Mechanical engineering is science discipline, which directly influence all industrial sectors. It is...
Titanium (Ti) based materials are deemed one type of the best metallic materials for biomedical appl...
Metal additive manufacturing (metal-AM) has undergone a remarkable evolution over the past three dec...
The mechanical properties and biocompatibility of titanium alloy medical devices and implants produc...
Biomaterials have gained increasing significance in a number of technological applications in recent...
Ti and Ti-based alloys have unique properties such as high strength, low density and excellent corro...
Purpose This paper seeks to investigate the possibility of producing medical or dental parts by sele...
Titanium may be considered a relatively new engineering material. It was discovered much later than ...
The difficulty in machining titanium alloys has led to the development of new cutting tools with tai...
Abstract Nanotechnology is the science that employs the use of materials that have at least one dim...
Over the last three decades, Metal Injection Moulding (MIM) has become an increasingly important man...
Nanotechnology is an extremely powerful emerging technology, which is expected to have a substantial...
yesThe main approaches to the formation of modern functional materials for medical implants, includi...
When it comes to application of specific material properties, high accuracy and minimal rework of na...
Nanostructuring of titanium-based implantable devices can provide them with superior mechanical prop...
Mechanical engineering is science discipline, which directly influence all industrial sectors. It is...
Titanium (Ti) based materials are deemed one type of the best metallic materials for biomedical appl...
Metal additive manufacturing (metal-AM) has undergone a remarkable evolution over the past three dec...
The mechanical properties and biocompatibility of titanium alloy medical devices and implants produc...
Biomaterials have gained increasing significance in a number of technological applications in recent...
Ti and Ti-based alloys have unique properties such as high strength, low density and excellent corro...
Purpose This paper seeks to investigate the possibility of producing medical or dental parts by sele...
Titanium may be considered a relatively new engineering material. It was discovered much later than ...
The difficulty in machining titanium alloys has led to the development of new cutting tools with tai...
Abstract Nanotechnology is the science that employs the use of materials that have at least one dim...
Over the last three decades, Metal Injection Moulding (MIM) has become an increasingly important man...
Nanotechnology is an extremely powerful emerging technology, which is expected to have a substantial...
yesThe main approaches to the formation of modern functional materials for medical implants, includi...