Keywords: Titanium; Near alpha alloy; IMI 834; Dual Microstructure; Tensile test;
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Effects of α + β phase deformation on microstructure, fatigue and dwell fatigue behavior of a near alpha titanium alloy
Keywords: Near α titanium alloy; IMI 834; Thermo-mechanical processing; Dwell fatigue; Micro-texture;
Correlation between microstructural features and creep strain in a near-α titanium alloy processed in the α+β regime
Keywords: IMI 834; Near-α; Titanium alloys; Creep; Structure-property correlations;
Hot working and geometric dynamic recrystallisation behaviour of a near-α titanium alloy with acicular microstructure
Keywords: Near-α titanium alloy; IMI 834; Globularisation; Avrami analysis; Acicular microstructure;
Modeling the hot working behavior of near-α titanium alloy IMI 834
Keywords: Titanium alloys; IMI 834; Hot working; Processing maps; Constitutive modeling;
Analysis of backscattered ultrasound amplitude of Ti–5.8Al–4Sn–3.5Zr–0.7Nb–0.5Mo–0.3Si samples in terms of their microstructures and local textures
Keywords: IMI 834; Texture heterogeneities; EBSD; Backscattered ultrasound
Investigation of α platelet boundaries in a near-α titanium alloy
Keywords: Titanium alloy; TEM; Precipitation; Near-α titanium; IMI 834
The influence of dynamic strain aging on the low cycle fatigue behavior of near alpha titanium alloy IMI 834
Keywords: IMI 834; Titanium alloy; Dynamic strain aging; Low cycle fatigue; Dislocation substructures
Serrated flow behavior in a near alpha titanium alloy IMI 834
Keywords: IMI 834; Near α-titanium alloy; Dynamic strain aging; Serrations; Tensile deformation
Effect of temperature on tensile properties of near-α alloy Timetal 834
Keywords: Dynamic strain aging (DSA); IMI 834; Ti alloy; Tensile properties;
Effect of environment on thermomechanical fatigue life
Keywords: Thermomechanical fatigue; Environmental effects; Life prediction; Austenitic stainless steel; IMI 834; Near-γ TiAl alloy;
In-situ fatigue in an environmental scanning electron microscope – Potential and current limitations
Keywords: In situ fatigue; Cast magnesium; AM60B; High-temperature titanium alloy; IMI 834; Environmental degradation; Fatigue mechanisms; Microstructure; Crack initiation; Small crack growth; Damage evolution
Substructure of high temperature compressed titanium alloy IMI 834
Keywords: IMI 834; Titanium alloy; TEM; Compression; Dislocation; Forging