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Intensive formation of intermetallic phases under ions implantation by aluminum of titanium target

Modification of structural phase state and mechanical properties of poly-grained titanium alloy implanted by aluminum ions that ion implantation results in a considerable improvement of mechanical properties of both large

Influence of the grain size on the dispersion strengthening of VT1-0 alloy implanted with aluminum ions

Grain size effect on the type VT1-0 alloy modified by aluminum ion implantation

The effect of aluminum ion implantation on the grain size and structure of UFG titanium of UFG titanium with an average grain size ~0.2 μm implanted with aluminum ions. An MEVVA-V.RU source has

Structural-phase state of UFG-titanium implanted with aluminum ions. Implantation was carried out on MEVVA-V.RU ion source at room temperature, exposure time of 5.25 h and ion

Hardening by ion implantation of VT1-0 alloy having different grain sizeThe paper presents a transmission electron microscopy (TEM) study of the structural and phase state

Grain shape and size and structural and phase conditions modified by aluminum ion implantation in UFG titanium. The ion implantation is carried out on Mevva-V.Ru ion source at ion-implantation dosages of 1·1017, 5

Scale effects in the structure of modern superalloys : Role of nanoparticlesThe structural state of the y and y phases of modern superalloys is considered in detail. A

Influence of the aluminum ion implantation dose on the phase composition of submicrocrystalline titanium ×1017 ion/cm2 using a MEVVA5.RU source. The grain longitudinal and transverse dimensions were determined

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