Issue |
Title |
File |
Vol 28, No 3 (2019) |
Aerosol Deposition of MAX Phase-Based Coatings onto High-Temperature Nickel Alloy |
|
Manokhin S.S., Barinov V.Y., Golosova O.A.
|
Vol 26, No 4 (2017) |
AlON powders by aluminothermic SHS under pressure: Synthesis and characterization |
|
Gorshkov V.A., Miloserdov P.A., Ignat’eva T.I., Semenova V.N., Kovalev I.D.
|
Vol 26, No 4 (2017) |
AlON powders by SHS under nitrogen pressure with KClO4 as a booster |
|
Akopdzhanyan T.G., Borovinskaya I.P.
|
Vol 27, No 2 (2018) |
Aluminothermic SHS in CaCrO4–Al–C Mixtures under Nitrogen Pressure |
|
Miloserdov P.A., Yukhvid V.I., Gorshkov V.A., Kovalev I.D., Miloserdova O.M.
|
Vol 25, No 1 (2016) |
Aluminothermic SHS of ferrochromium from ore concentrate: Influence of Al content of green composition on phase segregation |
|
Kachin A.R., Loryan V.E., Borovinskaya I.P.
|
Vol 26, No 2 (2017) |
Aluminum oxynitride by SHS under high pressure of nitrogen gas |
|
Akopdzhanyan T.G., Borovinskaya I.P., Chemagina E.A.
|
Vol 27, No 2 (2018) |
Burning Velocity of Double-Layer Ti + 2B Strips: Influence of Clearance Space |
|
Vadchenko S.G., Boyarchenko O.D.
|
Vol 26, No 1 (2017) |
Calciothermic reduction of titanium dioxide and molybdenum trioxide under pressure of nitrogen gas |
|
Avramchik A.N., Braverman B.S., Maksimov Y.M., Chukhlomina L.N.
|
Vol 26, No 1 (2017) |
Cast ceramics by metallothermic SHS under elevated argon pressure |
|
Gorshkov V.A., Miloserdov P.A., Kovalev I.D.
|
Vol 28, No 1 (2019) |
Catalytic Activity of KOH–CaO–Al2O3 Nanocomposites in Biodiesel Production: Impact of Preparation Method |
|
Nayebzadeh H., Saghatoleslami N., Haghighi M., Tabasizadeh M.
|
Vol 26, No 4 (2017) |
Catalytic Pd–Ag nanoparticles immobilized on fiber glass by surface self-propagating thermal synthesis |
|
Kotolevich Y.S., Mamontov G.V., Vodyankina O.V., Petrova N.I., Smirnova N.S., Tsyryul’nikov P.G., Trenikhin M.V., Nizovskii A.I., Kalinkin A.V., Smirnov M.Y., Goncharov V.B.
|
Vol 26, No 2 (2017) |
Cellular combustion of Ti powder in air ducts: Influence of convection currents |
|
Kostin S.V., Krishenik P.M.
|
Vol 28, No 1 (2019) |
Cellular Infiltration Combustion of Ti Powder in Planar Ducts in Conditions of Restricted Air Access |
|
Krishenik P.M., Kostin S.V.
|
Vol 28, No 3 (2019) |
Coflow Combustion in Granulated Ti + xC Mixtures: Boundary Conditions for Convection-Driven Wave Propagation |
|
Seplyarskii B.S., Kochetkov R.A., Lisina T.G.
|
Vol 28, No 3 (2019) |
Coflow Combustion of Composite (Ni + Al)–(Ti + C) Granules |
|
Seplyarskii B.S., Kochetkov R.A., Lisina T.G., Abzalov N.I.
|
Vol 28, No 2 (2019) |
Coflow Combustion of Granulated (Ti + C) + xAl2O3 Mixtures: Combustibility Limits |
|
Seplyarskii B.S., Kochetkov R.A., Abzalov N.I., Lisina T.G.
|
Vol 26, No 3 (2017) |
Combustion and materials synthesis |
|
Manukyan K.V.
|
Vol 27, No 2 (2018) |
Combustion of 5Ti + 3Si Mixtures: Influence of Ambient Pressure, Thermovacuum Treatment, and Mechanical Activation |
|
Kochetov N.A., Studenikin I.A., Kovalev I.D.
|
Vol 25, No 3 (2016) |
Combustion of cylindrical Ti + 0.5C compacts: Influence of mechanical activation, thermovacuum degassing, and ambient pressure |
|
Kochetov N.A., Khomenko N.A., Seplyarskii B.S., Busurina M.L.
|
Vol 28, No 4 (2019) |
Combustion of Gasless Systems: Thermocapillary Convection of Metal Melt |
|
Lapshin O.V., Prokof’ev V.G.
|
Vol 27, No 1 (2018) |
Combustion of Granulated Gasless Mixtures in a Flow of Inert Gas |
|
Lapshin O.V., Prokof’ev V.G., Smolyakov V.K.
|
Vol 28, No 4 (2019) |
Combustion of Granulated Ni–Al Mixtures: Influence of Mechanoactivation Time |
|
Kochetov N.A., Seplyarskii B.S.
|
Vol 25, No 2 (2016) |
Combustion of powdered and granulated Ti + xC mixtures (x = 0.5, 0.75, 1.0) in a coflow of argon and nitrogen gas |
|
Kochetkov R.A., Seplyarskii B.S., Alymov M.I.
|
Vol 25, No 2 (2016) |
Combustion of powdered and granulated Ti + xC mixtures (0.5 < x < 1.0) |
|
Seplyarskii B.S., Kochetkov R.A.
|
Vol 28, No 1 (2019) |
Combustion of Si–C Mixtures in Nitrogen Gas: Impact of Iron-Containing Additives |
|
Barinova T.V., Borovinskaya I.P., Barinov V.Y., Kovalev I.D.
|
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