Investigation of force parameters during rolling in relief rollsEsbolat, Aibol,
Panin, Evgeniy,
Arbuz, Alexandr,
Kuis, Dmitry,
Naizabekov, Abdrakhman,
Lezhnev, Sergey,
Yerzhanov, Almas,
Krupenkin, Ivan,
Tolkushkin, Andrey,
Kawalek, Anna,
Voroshilov, Denis rolling in relief
rolls. Empirical dependences were obtained to determine the average
rolling pressure
Production of nanostructured shape memory alloy for the aerospace industry by rolling method by intensive plastic deformation in
rolling mills. An alternative to powder metallurgy is proposed a
Properties of Nitrogen/Silicon Doped Vertically Oriented Graphene Produced by ICP CVD Roll-to-Roll TechnologyRozel, P.,
Radziuk, D. V.,
Mikhnavets, L. A.,
Khakhlov, E. A.,
Shiripov, V.,
Matolínová, I.,
Matolin, V.,
Basaev, A. S.,
Kargin, N. I.,
Labunov, V. A.,
Радюк, Д. В.,
Михновец, Л. А.,
Хохлов, Е. А.,
Басаев, А. С.,
Лабунов, В. А. new
method that combines the ICP CVD with
roll-to-roll technology to enable the in-situ preparation
Structure and properties of aluminum alloy 1421 after equal-channel angular pressing and isothermal rolling crystallographic texture were prepared by the
method of equal-channel angular pressing (ECAP) through a die
Vertically oriented graphene based walls and columns obtained by ICP CVD method on moving substrates as prior stage of the roll-to-roll technologyLabunov, V. A.,
Radziuk, D.,
Grapov, D. V.,
Rozel, P.,
Khokhlov, E.,
Shiripov, V.,
Basaev, A.,
Kargin, N.,
Лабунов, В. А.,
Радюк, Д. В.,
Грапов, Д. В. graphene (VOG) walls with a curved morphology by ICP CVD
method. Such VOG walls represent a very promising