Densification behaviours of titanium alloy (Ti-6Al-4V) powder compacts were investigated under uniaxial compression at high temperature. The yield function and a strain hardening law proposed by Kim were implemented into a finite element program (Abaqus) to compare with experimental data of porous titanium alloy powder preforms under PM forging. Experimental data were compared with finite element calculations for the variations of relative density with the applied pressure. Deformed geometry and density distributions of titanium alloy powder compacts under PM forging were also compared with finite element calculations.X116sciescopu
Powder compact forging was used to produce bulk consolidated titanium and Ti-6Al-4V (wt %) and Ti-47...
The development of novel extractive metallurgy techniques for titanium offers the prospect of lower ...
Powder compact forging was used to produce Ti and Ti-6Al-4V rocker arms using pre-alloyed and blende...
Densification behaviour of titanium alloy powder was investigated under hot isostatic pressing. Expe...
Densification model of titanium alloy (Ti-6Al-4V) are investigated during hot isostatic pressing (H...
Powder forging is a technique that has been used to produce fully dense near-net parts from metal po...
The press-and-sinter method of producing net shapes was applied to titanium alloys. The quantitative...
Hot Isostatic Pressing is a proved process for compacting powder metallurgical materials far below t...
Since titanium powder metallurgy poses opportunities for the manufacture of a range of components, t...
Densification behavior of nanocrystalline titania powder was investigated under cold compaction. Exp...
An approximate master curve for the densification of cold-pressed titanium powder during vacuum sint...
Simulation can be divided into two types: physical simulation and interactive numerical simulation. ...
Ti6Al4V is probably the best known and studied titanium alloy, not only for aerospace applications. ...
Uniaxial die compaction of Sponge Ti with a maximum particle size of 3 mm and irregular spongy parti...
Induction heating of powder compacts could be a very effective method for metal powder consolidation...
Powder compact forging was used to produce bulk consolidated titanium and Ti-6Al-4V (wt %) and Ti-47...
The development of novel extractive metallurgy techniques for titanium offers the prospect of lower ...
Powder compact forging was used to produce Ti and Ti-6Al-4V rocker arms using pre-alloyed and blende...
Densification behaviour of titanium alloy powder was investigated under hot isostatic pressing. Expe...
Densification model of titanium alloy (Ti-6Al-4V) are investigated during hot isostatic pressing (H...
Powder forging is a technique that has been used to produce fully dense near-net parts from metal po...
The press-and-sinter method of producing net shapes was applied to titanium alloys. The quantitative...
Hot Isostatic Pressing is a proved process for compacting powder metallurgical materials far below t...
Since titanium powder metallurgy poses opportunities for the manufacture of a range of components, t...
Densification behavior of nanocrystalline titania powder was investigated under cold compaction. Exp...
An approximate master curve for the densification of cold-pressed titanium powder during vacuum sint...
Simulation can be divided into two types: physical simulation and interactive numerical simulation. ...
Ti6Al4V is probably the best known and studied titanium alloy, not only for aerospace applications. ...
Uniaxial die compaction of Sponge Ti with a maximum particle size of 3 mm and irregular spongy parti...
Induction heating of powder compacts could be a very effective method for metal powder consolidation...
Powder compact forging was used to produce bulk consolidated titanium and Ti-6Al-4V (wt %) and Ti-47...
The development of novel extractive metallurgy techniques for titanium offers the prospect of lower ...
Powder compact forging was used to produce Ti and Ti-6Al-4V rocker arms using pre-alloyed and blende...