b-type Ti-alloy is a promising biomedical implant material as it has a low Young’s modulus and is also known to have inferior surface hardness. Various surface treatments can be applied to enhance the surface hardness. Physical vapor deposition and chemical vapor deposition are two examples of this but these techniques have limitations such as poor interfacial adhesion and high distortion. Laser surface treatment is a relatively new surface modification method to enhance the surface hardness but its application is still not accepted by the industry. The major problem of this process involves surface melting which results in higher surface roughness after the laser surface treatment.This paper will report the results achieved by a 100W CW fi...
Objective: To investigate the effect of laser surface treatment of cast titanium alloy on microstruc...
The laser surface engineering of titanium alloys has been developed over the past 30 years to produc...
The present study aims at enhancing the wear resistance of Ti-6Al-4V by laser surface nitriding. Las...
β -type Ti-alloy is a promising biomedical implant material as it has a low Young’s modulus but is a...
In this study, the idea of applying open-air laser nitriding to improve the microstructural and mech...
The present study aims at enhancing the wear resistance of Ti-6Al-4V by laser surface melting and ni...
Titanium and its alloys have been commonly used for biomedical implant applications for many years; ...
Laser nitriding is known to be an effective method to improve the surface hardness and wear resistan...
Titanium and its alloys have been commonly used for biomedical implant applications for many years; ...
AbstractThe present study concerns in-depth analysis of the alloyed zone formed by laser gas alloyin...
In the present study, a detailed investigation of mechanical and electrochemical properties of laser...
The present study aims at enhancing the biocompatibility of Ti-6Al-4V by laser surface nitriding. La...
Introduction. Ti-6Al-4V is used in biomedical engineering due to its excellent properties: high st...
In many applications, surface engineering is needed in order to overcome the poor wear properties of...
The relatively high elastic modulus coupled with the presence of toxic vanadium (V) in Ti6Al4V alloy...
Objective: To investigate the effect of laser surface treatment of cast titanium alloy on microstruc...
The laser surface engineering of titanium alloys has been developed over the past 30 years to produc...
The present study aims at enhancing the wear resistance of Ti-6Al-4V by laser surface nitriding. Las...
β -type Ti-alloy is a promising biomedical implant material as it has a low Young’s modulus but is a...
In this study, the idea of applying open-air laser nitriding to improve the microstructural and mech...
The present study aims at enhancing the wear resistance of Ti-6Al-4V by laser surface melting and ni...
Titanium and its alloys have been commonly used for biomedical implant applications for many years; ...
Laser nitriding is known to be an effective method to improve the surface hardness and wear resistan...
Titanium and its alloys have been commonly used for biomedical implant applications for many years; ...
AbstractThe present study concerns in-depth analysis of the alloyed zone formed by laser gas alloyin...
In the present study, a detailed investigation of mechanical and electrochemical properties of laser...
The present study aims at enhancing the biocompatibility of Ti-6Al-4V by laser surface nitriding. La...
Introduction. Ti-6Al-4V is used in biomedical engineering due to its excellent properties: high st...
In many applications, surface engineering is needed in order to overcome the poor wear properties of...
The relatively high elastic modulus coupled with the presence of toxic vanadium (V) in Ti6Al4V alloy...
Objective: To investigate the effect of laser surface treatment of cast titanium alloy on microstruc...
The laser surface engineering of titanium alloys has been developed over the past 30 years to produc...
The present study aims at enhancing the wear resistance of Ti-6Al-4V by laser surface nitriding. Las...