Biocompatible metals have been revolutionizing the biomedical field, predominantly in human implant applications, where these metals widely used as a substitute to or as function restoration of degenerated tissues or organs. Powder metallurgy techniques, in specific the metal injection moulding (MIM) process, have been employed for the fabrication of controlled porous structures used for dental and orthopaedic surgical implants. The porous metal implant allows bony tissue ingrowth on the implant surface, thereby enhancing fixation and recovery. This paper elaborates a systematic classification of various biocompatible metals from the aspect of MIM process as used in medical industries. In this study, three biocompatible metals are reviewed-...
The damaged dental implants are restored replacing with reliable bioimplants made of polymers, cera...
Metal injection moulding (MIM) can be used to make close to full density parts. The superiority of M...
Metal alloys made from titanium, zinc, copper, and cobalt-chromium-molybdenum used in medical implan...
Over the last three decades, Metal Injection Moulding (MIM) has become an increasingly important man...
Titanium (Ti) and its alloys may be processed via advanced powder manufacturing routes such as addit...
Powder metallurgy P/M of biomaterials is still a niche market so far, but considerable progress of r...
In the realm of bioimplantation, titanium-based Shape Memory Alloys (SMAs) exhibit phenomenal versat...
In the realm of bioimplantation, titanium-based Shape Memory Alloys (SMAs) exhibit phenomenal versat...
Metal Injection moulding (MIM) is an advanced near net shape forming process for high quality of com...
Metal Injection moulding (MIM) is an advanced near net shape forming process for high quality of com...
Industrial manufacturing of prosthesis components could take significant advantage by the introducti...
Industrial manufacturing of prosthesis components could take significant advantage by the introducti...
Industrial manufacturing of prosthesis components could take significant advantage by the introducti...
The biomaterial used in medical implantable devices must be able to sufﬕciently integrate within t...
Industrial manufacturing of prosthesis components could take significant advantage by the introducti...
The damaged dental implants are restored replacing with reliable bioimplants made of polymers, cera...
Metal injection moulding (MIM) can be used to make close to full density parts. The superiority of M...
Metal alloys made from titanium, zinc, copper, and cobalt-chromium-molybdenum used in medical implan...
Over the last three decades, Metal Injection Moulding (MIM) has become an increasingly important man...
Titanium (Ti) and its alloys may be processed via advanced powder manufacturing routes such as addit...
Powder metallurgy P/M of biomaterials is still a niche market so far, but considerable progress of r...
In the realm of bioimplantation, titanium-based Shape Memory Alloys (SMAs) exhibit phenomenal versat...
In the realm of bioimplantation, titanium-based Shape Memory Alloys (SMAs) exhibit phenomenal versat...
Metal Injection moulding (MIM) is an advanced near net shape forming process for high quality of com...
Metal Injection moulding (MIM) is an advanced near net shape forming process for high quality of com...
Industrial manufacturing of prosthesis components could take significant advantage by the introducti...
Industrial manufacturing of prosthesis components could take significant advantage by the introducti...
Industrial manufacturing of prosthesis components could take significant advantage by the introducti...
The biomaterial used in medical implantable devices must be able to sufﬕciently integrate within t...
Industrial manufacturing of prosthesis components could take significant advantage by the introducti...
The damaged dental implants are restored replacing with reliable bioimplants made of polymers, cera...
Metal injection moulding (MIM) can be used to make close to full density parts. The superiority of M...
Metal alloys made from titanium, zinc, copper, and cobalt-chromium-molybdenum used in medical implan...