Use of hydrogen as a temporary alloying element in Ti alloys is an attractive approach to improve the mechanical properties of the materials, enhance processability and thereby reduce manufacturing costs. In this paper, the hydrogen diffusion process and the phase transformation both between Ti particles and in Ti sheets were simulated to analyze the mechanism of hydrogen diffusion in different phases (α-Ti, β-Ti and TiHx). With the simulation based on the kinetics and thermodynamics, quantitative behaviors of the hydrogen diffusion and the phase transformation were analyzed. The simulation results provide an insight into the diffusion process and improve the fundamental understanding of the mechanism of diffusion and phase trans...
Diffusion coefficients for hydrogen in titanium, its alloy Ti88Al12 and the intermetallic Ti3Al have...
Titanium is reactive toward hydrogen forming metal hydride which has a potential application in ...
The analysis presented here shows that in B2-phase of Ti49.1Ni50.9 (at%) alloy, hydrogenation with f...
Use of hydrogen as a temporary alloying element in titanium alloys is an attractive approach to impr...
The hydrogen diffusion and phase transformation in a titanium particle were studied based on thermod...
The transport of hydrogen during fusion welding of the titanium alloy Ti-6Al4V is analyzed. A couple...
Hydrogen plays a detrimental effect on the degeneration of titanium and its alloys, and it is very i...
Structural components must be lightweight and produced resource-saving while still fulfil the increa...
In this paper, phase transitions and microstructure evolution in titanium Ti-6Al-4V alloy parts prod...
Abstract. In the hydrogen (H) concentration range 1.6 5 x 5 1.8, TiH, exists in a S phase where Ti f...
Titanium is reactive toward hydrogen forming metal hydride which has a potential application in ...
In this paper, phase transitions and microstructure evolution in titanium Ti-6Al-4V alloy parts prod...
We improve our previous kinetic model of hydrogen transport in Ti [Y. Hamamoto et al., Nucl. Mater. ...
AbstractThe softening mechanism of unhydrogenated Ti-45Al-5Nb-0.8Mo-0.3Y alloy and Ti-45Al-5Nb-0.8Mo...
This research is about modelling and simulation of how the hydrogen diffuses in high strength steels...
Diffusion coefficients for hydrogen in titanium, its alloy Ti88Al12 and the intermetallic Ti3Al have...
Titanium is reactive toward hydrogen forming metal hydride which has a potential application in ...
The analysis presented here shows that in B2-phase of Ti49.1Ni50.9 (at%) alloy, hydrogenation with f...
Use of hydrogen as a temporary alloying element in titanium alloys is an attractive approach to impr...
The hydrogen diffusion and phase transformation in a titanium particle were studied based on thermod...
The transport of hydrogen during fusion welding of the titanium alloy Ti-6Al4V is analyzed. A couple...
Hydrogen plays a detrimental effect on the degeneration of titanium and its alloys, and it is very i...
Structural components must be lightweight and produced resource-saving while still fulfil the increa...
In this paper, phase transitions and microstructure evolution in titanium Ti-6Al-4V alloy parts prod...
Abstract. In the hydrogen (H) concentration range 1.6 5 x 5 1.8, TiH, exists in a S phase where Ti f...
Titanium is reactive toward hydrogen forming metal hydride which has a potential application in ...
In this paper, phase transitions and microstructure evolution in titanium Ti-6Al-4V alloy parts prod...
We improve our previous kinetic model of hydrogen transport in Ti [Y. Hamamoto et al., Nucl. Mater. ...
AbstractThe softening mechanism of unhydrogenated Ti-45Al-5Nb-0.8Mo-0.3Y alloy and Ti-45Al-5Nb-0.8Mo...
This research is about modelling and simulation of how the hydrogen diffuses in high strength steels...
Diffusion coefficients for hydrogen in titanium, its alloy Ti88Al12 and the intermetallic Ti3Al have...
Titanium is reactive toward hydrogen forming metal hydride which has a potential application in ...
The analysis presented here shows that in B2-phase of Ti49.1Ni50.9 (at%) alloy, hydrogenation with f...