It is shown that pulsed electron beam irradiation of commercially pure titanium at a beam energy density of 10 J/cm{2}, pulse duration of 150 [mu]s, number of pulses of N=5 pulses, and pulse repetition frequency of 0.3 Hz with attendant polymorphic [alpha]->[beta]->[ alpha] transformations allows a more than five-fold decrease in the grain and subgrain sizes of the material structure
The research is devoted to study the structural condition and their evolution from the surface to th...
In order to study the conditions of modification of the surface layer of the system coating (TiCuN)/...
The formation of electro-explosive alloying zone with the thickness up to 50 µm has been revealed. I...
Microstructure formation in surface layers of pure titanium and ferritic-martensitic steel subjected...
The physicomechanical properties of the VT1-0 titanium surface modified by a pulsed carbon ion beam ...
Complex modification of a surface of commercially pure titanium is realized. Firstly plasma is creat...
The influence of intense pulsed electron beam (IPEB) treatment on the chemical composition and struc...
Abstract – Pulsed electron-beam treatment of a VT6 alloy was realized. The phase composition, the de...
By methods of modern physical metallurgy the analysis of structure phase states of titanium alloy VT...
A rather homogeneous grain structure with equiaxial grains is formed for both alloys already after t...
The effect of an infrared pulse laser with femtosecond radiation (λ = 744 nm, τ ≈ 120 fs, E ≤ 8 mJ) ...
A titanium-yttrium composite surface layer is formed on pure titanium surface by electro explosion a...
The present study is concerned with the microstructural modification and the hardness improvement of...
Titanium is carbonized by the electroexplosive method. Formation of a surface alloyed layer and a co...
Abstract – Investigation results of elemental com-position, structural-phase conditions and surface ...
The research is devoted to study the structural condition and their evolution from the surface to th...
In order to study the conditions of modification of the surface layer of the system coating (TiCuN)/...
The formation of electro-explosive alloying zone with the thickness up to 50 µm has been revealed. I...
Microstructure formation in surface layers of pure titanium and ferritic-martensitic steel subjected...
The physicomechanical properties of the VT1-0 titanium surface modified by a pulsed carbon ion beam ...
Complex modification of a surface of commercially pure titanium is realized. Firstly plasma is creat...
The influence of intense pulsed electron beam (IPEB) treatment on the chemical composition and struc...
Abstract – Pulsed electron-beam treatment of a VT6 alloy was realized. The phase composition, the de...
By methods of modern physical metallurgy the analysis of structure phase states of titanium alloy VT...
A rather homogeneous grain structure with equiaxial grains is formed for both alloys already after t...
The effect of an infrared pulse laser with femtosecond radiation (λ = 744 nm, τ ≈ 120 fs, E ≤ 8 mJ) ...
A titanium-yttrium composite surface layer is formed on pure titanium surface by electro explosion a...
The present study is concerned with the microstructural modification and the hardness improvement of...
Titanium is carbonized by the electroexplosive method. Formation of a surface alloyed layer and a co...
Abstract – Investigation results of elemental com-position, structural-phase conditions and surface ...
The research is devoted to study the structural condition and their evolution from the surface to th...
In order to study the conditions of modification of the surface layer of the system coating (TiCuN)/...
The formation of electro-explosive alloying zone with the thickness up to 50 µm has been revealed. I...