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Tensile behaviour of submicrocrystalline ferritic steel processed by large-strain deformationMechanical tests have been carried out on Fe-15%Cr ferritic stainless steel with various

STRENGTH CHARACTERISTICS EVALUATION OF CAST WHEELS ACCORDING TO THEIR MICROSTRUCTURESTRENGTH CHARACTERISTICS EVALUATION OF CAST WHEELS ACCORDING TO THEIR MICROSTRUCTURE

Microstructure and mechanical properties of heat-resistant 12 % Cr ferritic-martensitic steel EK-181 after thermomechanical treatment at room temperature and up to ≈430 MPa at the test temperature T = 650°C. The potential of microstructure

A systematic study on the effects of shot peening on a mild carbon steel: Microstructure, mechanical properties, and axial fatigue strength of smooth and notched specimens energy on microstructure, mechanical properties, and fatigue behavior of AISI 1045 carbon steel

Effect of warm multidirectional forging on the microstructure and mechanical properties of a high-nitrogen austenitic steelThe features of the microstructure of the high-nitrogen austenitic VNS-53-Sh steel after

Evolution of microstructure and mechanical properties of a CoCrFeMnNi High-entropy alloy during high-pressure torsion at room and cryogenic temperatures rotation for 180°. The microstructure evolution is associated with intensive deformation-induced twinning

The microstructure and tensile properties of new high-manganese low-activation austenitic steelUsing X-ray diffraction, scanning and transmission electron microscopy, the microstructure of a new

Deformation microstructures and tensile properties of an austenitic stainless steel subjected to multiple warm rollingThe deformation microstructures of a 316L-type austenitic stainless steel subjected to multiple bar

Effect of ECAP on microstructure and mechanical properties of Cu-₁₄Fe microcomposite alloy, in addition, to 4 passes via routes Bc and C. Microstructure of the alloy after ECAP was characterized using

Electrocontact Material Based on Silver Dispersion-Strengthened by Nickel, Titanium, and Zinc Oxides in the process of electroerosion tests; at 3 wt %, an overheating and welding of the contacts are observed.

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