Multifunctional titanium alloys, termed Gum Metal™, are ß-phase Ti alloys first developed in 2003. These alloys exhibit many interesting properties including, for example, low rate of work-hardening and superplasticity during cold deformation. The original report described a new plastic deformation mechanism not involving major dislocation activity to explain such deformation behavior. In the current study, a comparable Ti-36.8Nb-2.7Zr-2.0Ta-0.44O (wt pct) alloy to the original investigators was produced by powder sintering, hot forging, solution treatment, and cold swaging with the aim at investigating the microstructural development during swaging. XRD and TEM showed that the forged/solution-treated alloy was ß-phase with a small amount o...
Metastable β titanium alloys are essential materials for biomaterials and aerospace applications. It...
In this study, the mechanism of {332}<113> twinning formation in cold-rolled Ti-35Nb-2Ta-3Zr-O...
The microstructure and texture evolution during continuous cooling hot deformation (CCHD) in a near ...
Multi-functional titanium alloys, termed Gum Metal™, are a suite of β-phase Ti alloys firs...
Body centred cubic (BCC) β-phase multifunctional titanium alloys have been developed with a very uni...
In this study, a Ti-32.9Nb-4.2Zr-7.5Ta (wt%) titanium alloy was produced by melting in a cold crucib...
The effects of heavy cold plastic deformation by rolling on microstructural features and mechanical ...
For near-β high-strength titanium alloys, rheological softening is the key step during thermal defor...
International audienceIn the present days titanium and titanium alloys are extensively studied and u...
In this study, microstructural evolution and its influence on the mechanical properties of a newly d...
Deformation twinning is a phenomenon that causes local shear strain concentrations, with the materia...
International audienceThe microstructure, crystallographic texture and local properties evolution we...
Gum Metal is a set of multi-component β-Ti alloys designed and developed by Toyota Central R&D L...
The microstructural evolution upon compressive loading was identified for metastable Ti-Nb-Ta-M (M=I...
Due to its supreme mechanical properties, Ti-Nb-based gum metal has attracted significant attentions...
Metastable β titanium alloys are essential materials for biomaterials and aerospace applications. It...
In this study, the mechanism of {332}<113> twinning formation in cold-rolled Ti-35Nb-2Ta-3Zr-O...
The microstructure and texture evolution during continuous cooling hot deformation (CCHD) in a near ...
Multi-functional titanium alloys, termed Gum Metal™, are a suite of β-phase Ti alloys firs...
Body centred cubic (BCC) β-phase multifunctional titanium alloys have been developed with a very uni...
In this study, a Ti-32.9Nb-4.2Zr-7.5Ta (wt%) titanium alloy was produced by melting in a cold crucib...
The effects of heavy cold plastic deformation by rolling on microstructural features and mechanical ...
For near-β high-strength titanium alloys, rheological softening is the key step during thermal defor...
International audienceIn the present days titanium and titanium alloys are extensively studied and u...
In this study, microstructural evolution and its influence on the mechanical properties of a newly d...
Deformation twinning is a phenomenon that causes local shear strain concentrations, with the materia...
International audienceThe microstructure, crystallographic texture and local properties evolution we...
Gum Metal is a set of multi-component β-Ti alloys designed and developed by Toyota Central R&D L...
The microstructural evolution upon compressive loading was identified for metastable Ti-Nb-Ta-M (M=I...
Due to its supreme mechanical properties, Ti-Nb-based gum metal has attracted significant attentions...
Metastable β titanium alloys are essential materials for biomaterials and aerospace applications. It...
In this study, the mechanism of {332}<113> twinning formation in cold-rolled Ti-35Nb-2Ta-3Zr-O...
The microstructure and texture evolution during continuous cooling hot deformation (CCHD) in a near ...