After their introduction into the human body, the dental biomaterials are exposed to the corrosive environment. In our study, we evaluated the experimental corrosion resistance of a dental implant made by titanium alloy, immersed in artificial saliva at body temperature at pH = 5.2. The analysis of the main parameters of the corrosion process confirmed the good resistance of the titanium alloy subjected to corrosion
Dental implants are used to replace teeth lost due to decay, trauma, or periodontal diseases. Dental...
The biocompatibility of commercially pure (cp) titanium stems from its chemical stability within an ...
The biocompatibility of commercially pure (cp) titanium stems from its chemical stability within an ...
Titanium alloys are used i n odontology applications owing to their excellent biocompatibility. The ...
For the aesthetic and functional restoration of edentulous patients, recently dental implants have b...
The aim of this study was to explore the resistance to general and pitting corrosion of stainless st...
Four types of dental alloys used in metal-ceramic technology, two NiCr-based and two CoCr-based, wer...
This study presents the corrosion behavior of a low melting point Titanium alloy, which contains 30%...
OBJECTIVES: Ti, which is biocompatible and resistant to corrosion, is widely used for dental implant...
Several austenitic stainless steels suitable for high temperature applications because of their high...
Objectives: Ti, which is biocompatible and resistant to corrosion, is widely used for dental implant...
The purpose of this study was to develop titanium–silver alloys with biocompatibility, high corrosio...
The corrosion behaviour of metals plays a decisive role in evaluating the use of metal alloys as bio...
corrosion of Ti. This study investigated the conditions that promote the elution of Ti ions from Ti...
The biocompatibility of commercially pure (cp) titanium stems from its chemical stability within an ...
Dental implants are used to replace teeth lost due to decay, trauma, or periodontal diseases. Dental...
The biocompatibility of commercially pure (cp) titanium stems from its chemical stability within an ...
The biocompatibility of commercially pure (cp) titanium stems from its chemical stability within an ...
Titanium alloys are used i n odontology applications owing to their excellent biocompatibility. The ...
For the aesthetic and functional restoration of edentulous patients, recently dental implants have b...
The aim of this study was to explore the resistance to general and pitting corrosion of stainless st...
Four types of dental alloys used in metal-ceramic technology, two NiCr-based and two CoCr-based, wer...
This study presents the corrosion behavior of a low melting point Titanium alloy, which contains 30%...
OBJECTIVES: Ti, which is biocompatible and resistant to corrosion, is widely used for dental implant...
Several austenitic stainless steels suitable for high temperature applications because of their high...
Objectives: Ti, which is biocompatible and resistant to corrosion, is widely used for dental implant...
The purpose of this study was to develop titanium–silver alloys with biocompatibility, high corrosio...
The corrosion behaviour of metals plays a decisive role in evaluating the use of metal alloys as bio...
corrosion of Ti. This study investigated the conditions that promote the elution of Ti ions from Ti...
The biocompatibility of commercially pure (cp) titanium stems from its chemical stability within an ...
Dental implants are used to replace teeth lost due to decay, trauma, or periodontal diseases. Dental...
The biocompatibility of commercially pure (cp) titanium stems from its chemical stability within an ...
The biocompatibility of commercially pure (cp) titanium stems from its chemical stability within an ...