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Effect of cryogenic temperature and change of strain path on grain refinement during rolling of Cu-30Zn brass the rolling of Cu–30Zn brass was determined. To this end, the material was unidirectionally rolled or cross-rolled

Properties of Nitrogen/Silicon Doped Vertically Oriented Graphene Produced by ICP CVD Roll-to-Roll Technology new method that combines the ICP CVD with roll-to-roll technology to enable the in-situ preparation

An EBSD investigation of cryogenically-rolled Cu-30%Zn brass cryogenically-rolled Cu–30%Zn brass. The produced microstructure was found to be very inhomogeneous. At a

Investigation of the Structure and Properties of Deformed Semi-Finished Products from Alloys of the Al-REM System Made by the Method of Ingotless Rolling-Extruding alloys containing zirconium, cerium and lanthanum after ingotless rolling-extruding (IRE) and heat

Annealing behavior of cryogenically-rolled Cu-30Zn brassThe static-annealing behavior of cryogenically-rolled Cu–30Zn brass over a wide range

Grain structure evolution during cryogenic rolling of alpha brass development during cryogenic rolling of Cu-29.5Zn brass. Microstructure evolution was found to be broadly

Effect of electric-current pulses on grain-structure evolution in cryogenically rolled copperEffect of electric-current pulses on grain-structure evolution in cryogenically rolled copper

Study of the Influence of Conditions of Combined Casting and Rolling-Extruding and Two-Stage Annealing on the Structure and Properties of Semi-Finished Electrical Products from an Al–Zr System Alloy of the new composition of the Al-Zr system alloy by combined casting and rolling-extruding and two

Microstructure and mechanical properties of dispersion-strengthened aluminum-magnesium alloys obtained using ultrasonic treatment of melt with a thickness of up to 10 mm by hot rolling. The structure of the alloys obtained in the cast state

Effect of Al3Er particles on the structure, mechanical properties, and fracture of AA5056 alloy after casting and deformation treatment of the metal matrix. Rolling the AA5056-Al3Er alloy leads to a more uniform distribution of particles

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