Volume 14, Issue 2, July 2024

Regular issue 14 (2) 2024




A material with a gradient porous structure was produced by the method of layer-by-layer deposition of the powder mixtures. Permeability of materials with gradient porous structure was increased by 30 – 57 % due to the use of the coarse porous layer.

Structure and permeability of porous material from titanium carbide produced with porogens of various dispersion

A material with a gradient porous structure was produced by the method of layer-by-layer deposition of the powder mixtures. Permeability of materials with gradient porous structure was increased by 30 – 57 % due to the use of the coarse porous layer.
V.S. Shustov, V.A. Zelensky, A.B. Ankudinov, A.S. Ustyukhin, M.I. Alymov
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Year: 2024 Volume: 14     Issue: 2 Pages: 125-129

Compared with traditional annealing without a field, unsaturated magnetic field annealing leads to a more significant improvement in the soft magnetic properties of an amorphous alloy with a higher Ni content.

The effect of Ni content in amorphous soft magnetic Fe-Ni-Si-B alloys on the magnetic properties and efficiency of unsaturated magnetic field annealing

Compared with traditional annealing without a field, unsaturated magnetic field annealing leads to a more significant improvement in the soft magnetic properties of an amorphous alloy with a higher Ni content.
E.N. Tokmakova, V.Y. Vvedenskiy
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Year: 2024 Volume: 14     Issue: 2 Pages: 130-135





Some areas consisting of two layers free of microcracks have been found in the structure of the coatings (Fig. 1). The lower layer - points (3 – 5) contains an increased concentration of Fe (~ 17-47 at.%). The (Fe) concentration in the crystallites of the upper layer (points 6 – 9) does not exceed 5 at.%, which is adequate to its content in crystallites in the areas with microcracks (Fig. 2). The lower layer of a two-layer coating due to its higher ductility acts as a barrier preventing the occurrence of microcracks at a sufficiently high Fe content (more than 14 wt.%).

Obtaining coatings by complex NiAl-based anodic alloys

Some areas consisting of two layers free of microcracks have been found in the structure of the coatings (Fig. 1). The lower layer - points (3 – 5) contains an increased concentration of Fe (~ 17-47 at.%). The (Fe) concentration in the crystallites of the upper layer (points 6 – 9) does not exceed 5 at.%, which is adequate to its content in crystallites in the areas with microcracks (Fig. 2). The lower layer of a two-layer coating due to its higher ductility acts as a barrier preventing the occurrence of microcracks at a sufficiently high Fe content (more than 14 wt.%).
S.N. Khimukhin, K.P. Eremina, V.K. Khe
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Year: 2024 Volume: 14     Issue: 2 Pages: 161-166
Journal section: Structure design and analysis

Our study is the first to demonstrate that lanthanum, even in small quantities, being part of the Al–Ca–La complex eutectics, has a decisive influence on the microstructure formation and mechanical properties of Al–Ca alloys.

Structure and mechanical properties of Al-Ca-(Fe, La) eutectic alloys after equal-channel angular pressing

Our study is the first to demonstrate that lanthanum, even in small quantities, being part of the Al–Ca–La complex eutectics, has a decisive influence on the microstructure formation and mechanical properties of Al–Ca alloys.
S.O. Rogachev, V.A. Andreev, M.A. Barykin, A.V. Doroshenko, R.D. Karelin, V.S. Komarov, E.A. Naumova, N.Y. Tabachkova
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Year: 2024 Volume: 14     Issue: 2 Pages: 167-172
Journal section: Structure design and analysis