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A Novel Approach for Analyzing the Effects of Almen Intensity on the Residual Stress and Hardness of Shot-Peened (TiB + TiC)/Ti–6Al–4V Composite: Deep LearningIn the present study, the experimental data of a shot-peened (TiB + TiC)/Ti–6Al–4V composite

A new method to elucidate fracture mechanism and microstructure evolution in titanium during dissimilar friction stir welding of aluminum and titaniumIn the friction stir welding (FSW) of dissimilar materials, the weld nugget exhibits composite

Mechanical behavior and microstructure evolution of a Ti-15Mo/TiB titanium–matrix composite during hot deformationA Ti-15Mo/TiB titanium–matrix composite (TMC) was produced by spark plasma sintering at 1400◦C

OPTICAL PROPERTIES OF COMPOSITE MEDIA BASED ON TITANIUM DIOXIDE WITH GOLD NANOPARTICLESA study of the spectral properties of a composite medium, which is a matrix of titanium dioxide

Effect of plastic deformation on the structure and properties of the Ti/TiB composite produced by spark plasma sinteringA Ti/17 vol % TiB composite material is produced by spark plasma sintering of a mixture of titanium

Structure and properties of Ti/TiB metal-matrix composite after isothermal multiaxial forgingMicrostructure and mechanical properties of a Ti/TiB metal-matrix composites after multiaxial

Green synthesis of titanium dioxide nanoparticles suitable for creating PVDF-TiO2 composite films; [Зеленый синтез наночастиц диоксида титана, пригодных для создания композитных пленок PVDF-TiO2]This work presents a green method for producing titanium dioxide nanoparticles. The resulting

Computational microstructure-based analysis of residual stress evolution in metal-matrix composite materials during thermomechanical loading invariance of the natural mechanical fragmentation. Two-phase structures of metal-matrix composites

Microstructure evolution of a ti/tib metal-matrix composite during high-temperature deformationA Ti/TiB metal-matrix composite (MMC) was produced by spark plasma sintering using a Ti-10wt.%TiB2

Synthesis of metal matrix composites based on CrxNiy-TiN for additive technology of new metal matrix composite materials for additive technologies. CrN + TiNi composites were obtained

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