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A new refractory Ti-Nb-Hf-Al high entropy alloy strengthened by orthorhombic phase particle/cm3. After annealing at 1200 °C for 24 h, the alloy possessed a single-phase B2 structure. Further

On the precipitation of the Ω-phase {111} al plates in the Al-Cu-Mg AlloyThe precipitation of Ω-phase {111}α plates in the Al-Cu-Mg alloy has been investigated at a Cu

Influence of Nanomodifying Additives and Strengthening Phase on the Structure and Properties of Laser Coating of Porous Titanium and mechanical properties of coatings during laser surfacing of a composite powder with a strengthening phase

Strengthening mechanisms of creep-resistant 12%Cr–3%Co steel with low N and high B contentsThe contributions from the martensitic laths, dislocations, secondary phase particles

The coarsening behavior of strengthening particles in an Al–Cu–Mg–Ag alloy during creepThe coarsening behavior of strengthening particles has been studied in a peak-aged Al

On the strengthening mechanisms of high nitrogen austenitic stainless steelsThe effect of microstructure and dispersion of secondary phases on tensile mechanical properties

Microstructure evolution and strengthening mechanisms in friction-stir welded Al-Mg-Sc alloyThe present work was undertaken to evaluate the effect of second-phase particles on microstructure

Microstructure evolution of a novel low-density Ti-Cr-Nb-V refractory high entropy alloy during cold rolling and subsequent annealing, the alloy had a single-phase bcc structure enabling room temperature deformation in compression to ε>50

RUSSIA-EU: FROM DISTRUST TO CONFIDENCE understanding of the ways of confidence strengthening: the concept of confidence in the context of national

Structure, Biodegradation, and In Vitro Bioactivity of Zn–1%Mg Alloy Strengthened by High-Pressure TorsionThe effect of high-pressure torsion (HPT) on the microstructure, phase composition, mechanical

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