The structural transformation and mechanical properties of a low-carbon 0.2% C steel and a 0.09% C-Mn-V steel in coarse- and ultrafine-grained (UFG) states were studied. The UFG structure with structural elements about 210-375 nm in size was obtained by rotary swaging (RS) and equal-channel angular pressing (ECAP). ECAP was used to compare the influence of the industrial deformation and SPD methods on the microstructure and properties of low-carbon steel
Aktarer, Semih Mahmut/0000-0001-5650-7431WOS: 000404516100023A low carbon steel (Grade A) was subjec...
Ultra fine grained low carbon low alloyed steel was formed by multiaxial forging. Altogether five pa...
© 2015, Springer Science+Business Media New York. The paper presents the results of a study on the m...
Low carbon steel AISI 10 was subjected to a severe plastic deformation technique called Equal Angula...
The effect of thermomechanical treatment on the microstructure, tensile strength and impact toughnes...
The presented work focused on the development of the microstructural and mechanical properties of a ...
© 2016 Advance Study Center Co. Ltd.The paper presents the results of a comparative tribological stu...
Thermal treatments and thermo-mechanical processing routes were applied on a conventional structural...
Finish rolling of low carbon strip below Ars has been found to offer a number of advantages during s...
A homogeneity of strength properties (microhardness) through the specimens and the peculiarities of ...
The presented work focused on the development of the microstructural and mechanical properties of a ...
The structure and mechanical properties complex of X80 pipe grade steel after controlled rolling and...
金沢大学大学院自然科学研究科In the present study, ultra fine-grained low carbon steel samples were processed by eq...
Grain refinement is a useful method to improve the strength and toughness of steels without changing...
The present work aimed to study the properties of medium-carbon steel during tempering treatment and...
Aktarer, Semih Mahmut/0000-0001-5650-7431WOS: 000404516100023A low carbon steel (Grade A) was subjec...
Ultra fine grained low carbon low alloyed steel was formed by multiaxial forging. Altogether five pa...
© 2015, Springer Science+Business Media New York. The paper presents the results of a study on the m...
Low carbon steel AISI 10 was subjected to a severe plastic deformation technique called Equal Angula...
The effect of thermomechanical treatment on the microstructure, tensile strength and impact toughnes...
The presented work focused on the development of the microstructural and mechanical properties of a ...
© 2016 Advance Study Center Co. Ltd.The paper presents the results of a comparative tribological stu...
Thermal treatments and thermo-mechanical processing routes were applied on a conventional structural...
Finish rolling of low carbon strip below Ars has been found to offer a number of advantages during s...
A homogeneity of strength properties (microhardness) through the specimens and the peculiarities of ...
The presented work focused on the development of the microstructural and mechanical properties of a ...
The structure and mechanical properties complex of X80 pipe grade steel after controlled rolling and...
金沢大学大学院自然科学研究科In the present study, ultra fine-grained low carbon steel samples were processed by eq...
Grain refinement is a useful method to improve the strength and toughness of steels without changing...
The present work aimed to study the properties of medium-carbon steel during tempering treatment and...
Aktarer, Semih Mahmut/0000-0001-5650-7431WOS: 000404516100023A low carbon steel (Grade A) was subjec...
Ultra fine grained low carbon low alloyed steel was formed by multiaxial forging. Altogether five pa...
© 2015, Springer Science+Business Media New York. The paper presents the results of a study on the m...