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How to quantify omega phase in titanium alloys? | ResearchGate
How to quantify omega phase in titanium alloys? | ResearchGate

Ruhr-Universität Bochum Atomic-Scale Characterisation
Ruhr-Universität Bochum Atomic-Scale Characterisation

Influence of oxygen on omega phase stability in the Ti-29Nb-13Ta-4.6Zr  alloy - ScienceDirect
Influence of oxygen on omega phase stability in the Ti-29Nb-13Ta-4.6Zr alloy - ScienceDirect

Metallurgical Materials Science and Alloy Design - Titanium alloys
Metallurgical Materials Science and Alloy Design - Titanium alloys

Full article: A review of the metastable omega phase in beta titanium  alloys: the phase transformation mechanisms and its effect on mechanical  properties
Full article: A review of the metastable omega phase in beta titanium alloys: the phase transformation mechanisms and its effect on mechanical properties

Dallas R. Trinkle | MatSE at the University of Illinois | research:ti
Dallas R. Trinkle | MatSE at the University of Illinois | research:ti

Why Does Titanium Alloy Beam Window Become Brittle After Proton Beam  Exposure ? <br /> - Research and Development on the Accelerator Target and  Beam Window Materials by RaDIATE International Collaboration - |
Why Does Titanium Alloy Beam Window Become Brittle After Proton Beam Exposure ? <br /> - Research and Development on the Accelerator Target and Beam Window Materials by RaDIATE International Collaboration - |

Origin of ω-phase formation in metastable β-type Ti-Mo alloys: cluster  structure and stacking fault | Scientific Reports
Origin of ω-phase formation in metastable β-type Ti-Mo alloys: cluster structure and stacking fault | Scientific Reports

DESY News: Analysis reveals new crystal structure in “gum metal” -  Deutsches Elektronen-Synchrotron DESY
DESY News: Analysis reveals new crystal structure in “gum metal” - Deutsches Elektronen-Synchrotron DESY

The effect of zirconium on the omega phase in Ti-24Nb-[0–8]Zr (at.%) alloys  - ScienceDirect
The effect of zirconium on the omega phase in Ti-24Nb-[0–8]Zr (at.%) alloys - ScienceDirect

Materials | Free Full-Text | Omega Phase Formation in Ti–3wt.%Nb Alloy  Induced by High-Pressure Torsion
Materials | Free Full-Text | Omega Phase Formation in Ti–3wt.%Nb Alloy Induced by High-Pressure Torsion

Role of omega phase evolution in plastic deformation of twinning-induced  plasticity β Ti–12V–2Fe–1Al alloy - ScienceDirect
Role of omega phase evolution in plastic deformation of twinning-induced plasticity β Ti–12V–2Fe–1Al alloy - ScienceDirect

Metallurgical Materials Science and Alloy Design - Titanium alloys
Metallurgical Materials Science and Alloy Design - Titanium alloys

Misfit stabilized embedded nanoparticles in metallic alloys - Physical  Chemistry Chemical Physics (RSC Publishing) DOI:10.1039/C5CP04641F
Misfit stabilized embedded nanoparticles in metallic alloys - Physical Chemistry Chemical Physics (RSC Publishing) DOI:10.1039/C5CP04641F

TEM observation of the Ti–12Mo alloy annealed at 473 K for 1 h: (a)... |  Download Scientific Diagram
TEM observation of the Ti–12Mo alloy annealed at 473 K for 1 h: (a)... | Download Scientific Diagram

The effect of zirconium on the omega phase in Ti-24Nb-[0–8]Zr (at.%) alloys  - ScienceDirect
The effect of zirconium on the omega phase in Ti-24Nb-[0–8]Zr (at.%) alloys - ScienceDirect

Development of Bronze Phase Titanium Dioxide Nanorods for Use as  Fast-Charging Anode Materials in Lithium-Ion Batteries | ACS Omega
Development of Bronze Phase Titanium Dioxide Nanorods for Use as Fast-Charging Anode Materials in Lithium-Ion Batteries | ACS Omega

Role of omega phase evolution in plastic deformation of twinning-induced  plasticity β Ti–12V–2Fe–1Al alloy - ScienceDirect
Role of omega phase evolution in plastic deformation of twinning-induced plasticity β Ti–12V–2Fe–1Al alloy - ScienceDirect

Impurities block the α to ω martensitic transformation in titanium | Nature  Materials
Impurities block the α to ω martensitic transformation in titanium | Nature Materials

Origin of ω-phase formation in metastable β-type Ti-Mo alloys: cluster  structure and stacking fault | Scientific Reports
Origin of ω-phase formation in metastable β-type Ti-Mo alloys: cluster structure and stacking fault | Scientific Reports

The Transformation in Titanium-Cobalt Alloys under High-Pressure Torsion
The Transformation in Titanium-Cobalt Alloys under High-Pressure Torsion

Origin of ω-phase formation in metastable β-type Ti-Mo alloys: cluster  structure and stacking fault | Scientific Reports
Origin of ω-phase formation in metastable β-type Ti-Mo alloys: cluster structure and stacking fault | Scientific Reports

X-ray diffraction patterns obtained for arc furnace as-cast (SC) sample...  | Download Scientific Diagram
X-ray diffraction patterns obtained for arc furnace as-cast (SC) sample... | Download Scientific Diagram

TEM images of TNTZ-0.1O (a–c). (a) SAD pattern from [011] β zone axis.... |  Download Scientific Diagram
TEM images of TNTZ-0.1O (a–c). (a) SAD pattern from [011] β zone axis.... | Download Scientific Diagram

Origin of ω-phase formation in metastable β-type Ti-Mo alloys: cluster  structure and stacking fault | Scientific Reports
Origin of ω-phase formation in metastable β-type Ti-Mo alloys: cluster structure and stacking fault | Scientific Reports

Origin of ω-phase formation in metastable β-type Ti-Mo alloys: cluster  structure and stacking fault | Scientific Reports
Origin of ω-phase formation in metastable β-type Ti-Mo alloys: cluster structure and stacking fault | Scientific Reports

giant fault, defect, plasticity, GUM, dslocations
giant fault, defect, plasticity, GUM, dslocations

Metallurgical Materials Science and Alloy Design - Titanium alloys
Metallurgical Materials Science and Alloy Design - Titanium alloys

Solid-Phase Synthesis of Titanium Dioxide Micro-Nanostructures | ACS Omega
Solid-Phase Synthesis of Titanium Dioxide Micro-Nanostructures | ACS Omega