A comprehensive investigation into dry sliding wear and associated evolutions of subsurface microstructure and nano-mechanical properties of a bulk nano-grained Ti6Al4V alloy (NG-Ti6Al4V) was conducted. Comparing with its coarse-grained counterpart (CG-Ti6Al4V), NG-Ti6Al4V always exhibited lower friction coefficient and greater wear resistance in a wide range of tribological conditions. It was also found that the sliding wear induced nano-mechanical properties and microstructure evolutions in Ti6Al4V alloy were largely dependent on its initial microstructural features. For the first time, TEM observations provided a direct experimental evidence that the originally saturated nanostructure in NG-Ti6Al4V could be further refined by sliding wea...
A nanosecond laser is used to fabricate groove-patterned textures on the upper surface of Ti-6Al-4V ...
The dry sliding wear behavior of as-cast pristine and boron-modified Ti-6Al-4V (Ti64) alloys (having...
Abstract: Friction and wear behaviours of Ti-6Al-4V (Ti64) and Ti-5Al-4V-0.6Mo-0.4Fe (Ti54) alloys s...
Titanium alloys have been of great interest in recent years because of their very attractive combina...
Titanium (Ti-6Al-4V) alloy is very attractive for many applications due to its high strength-to-weig...
The tribological behavior of pure titanium having coarse-grained or nanostructured surfaces has been...
The dry sliding wear behavior of the Ti-6Al-4V alloy sliding against itself and AISI M2 steel was in...
In this research, the effect of annealing and aging temperature as well as the effect of quenching m...
In the present study, a fully lamellar Ti6Al4V alloy was severely deformed by high pressure torsion ...
This paper investigates the effect of quenching and aging treatment on microstructure and abrasive w...
International audienceFretting wear is a surface degradation process caused by oscillatory motion an...
A nanocrystalline (NC) layer with the thickness of 30 µm was produced on pure titanium surface by su...
Tribological behaviour of Ti6Al4V alloy, during linear reciprocating sliding against alumina, at nan...
The mechanical and tribological characteristics of the Ti-6Al-7Nb alloy were investigated within a w...
In this study, comparative investigation of (i) untreated Ti–6Al–4V alloy, (ii) nanoporous thin TiO₂...
A nanosecond laser is used to fabricate groove-patterned textures on the upper surface of Ti-6Al-4V ...
The dry sliding wear behavior of as-cast pristine and boron-modified Ti-6Al-4V (Ti64) alloys (having...
Abstract: Friction and wear behaviours of Ti-6Al-4V (Ti64) and Ti-5Al-4V-0.6Mo-0.4Fe (Ti54) alloys s...
Titanium alloys have been of great interest in recent years because of their very attractive combina...
Titanium (Ti-6Al-4V) alloy is very attractive for many applications due to its high strength-to-weig...
The tribological behavior of pure titanium having coarse-grained or nanostructured surfaces has been...
The dry sliding wear behavior of the Ti-6Al-4V alloy sliding against itself and AISI M2 steel was in...
In this research, the effect of annealing and aging temperature as well as the effect of quenching m...
In the present study, a fully lamellar Ti6Al4V alloy was severely deformed by high pressure torsion ...
This paper investigates the effect of quenching and aging treatment on microstructure and abrasive w...
International audienceFretting wear is a surface degradation process caused by oscillatory motion an...
A nanocrystalline (NC) layer with the thickness of 30 µm was produced on pure titanium surface by su...
Tribological behaviour of Ti6Al4V alloy, during linear reciprocating sliding against alumina, at nan...
The mechanical and tribological characteristics of the Ti-6Al-7Nb alloy were investigated within a w...
In this study, comparative investigation of (i) untreated Ti–6Al–4V alloy, (ii) nanoporous thin TiO₂...
A nanosecond laser is used to fabricate groove-patterned textures on the upper surface of Ti-6Al-4V ...
The dry sliding wear behavior of as-cast pristine and boron-modified Ti-6Al-4V (Ti64) alloys (having...
Abstract: Friction and wear behaviours of Ti-6Al-4V (Ti64) and Ti-5Al-4V-0.6Mo-0.4Fe (Ti54) alloys s...