AbstractFatigue tests were conducted using copper processed by equal channel angular pressing (ECAP) through 4, 8 and 12 pass numbers. At high and medium stress amplitudes, the largest fatigue life was attained in the specimens processed by 8 passes, whereas the smallest one was given in 12 passes. At low stress amplitudes, S-N curves tended to coincide with a specific value of stress amplitude regardless of pass numbers. The physical background of the effect of ECAP pass numbers on S-N property was discussed from the viewpoints of microstructure and surface damage formation
This work presents the experimental results of fatigue crack growth resistance of ultrafine-grained ...
Oxygen-free copper of >99.95% purity was processed by equal-channel angular pressing at room tempera...
Electrolytic Tough Pitch (ETP) and Fire Refined High Conductivity (FRHC) copper samples were severel...
AbstractFatigue tests were conducted using copper processed by equal channel angular pressing (ECAP)...
In order to study the growth mechanism of fatigue cracks in ultrafine grained copper, stress control...
This work deals with fatigue properties and stability of microstructure of ultrafine-grained (UFG) c...
Fatigue behaviour of ultrafine-grained copper of high and low purity produced by means of equal chan...
Abstract. Equal channel angular pressing is one of severe plastic deformation methods often used for...
AbstractStability of microstructure of ultrafine-grained materials under cyclic loading is a crucial...
The influence of stress- and strain-controlled loading on microstructure and cyclic plastic behaviou...
AbstractThis work presents the experimental characterization of the fatigue crack growth resistance ...
The Equal Channel Angular Pressing is a hardening treatment with which ductile metals can beprocesse...
Abstract: The equal channel angular pressing (ECAP) technique is now recognised for achieving very s...
AbstractStructural property relationship indicates the significance of Ultra Fine Grain (UFG) for at...
Mechanical and microstructural analysis of equal channel angular pressed copper was experimentally i...
This work presents the experimental results of fatigue crack growth resistance of ultrafine-grained ...
Oxygen-free copper of >99.95% purity was processed by equal-channel angular pressing at room tempera...
Electrolytic Tough Pitch (ETP) and Fire Refined High Conductivity (FRHC) copper samples were severel...
AbstractFatigue tests were conducted using copper processed by equal channel angular pressing (ECAP)...
In order to study the growth mechanism of fatigue cracks in ultrafine grained copper, stress control...
This work deals with fatigue properties and stability of microstructure of ultrafine-grained (UFG) c...
Fatigue behaviour of ultrafine-grained copper of high and low purity produced by means of equal chan...
Abstract. Equal channel angular pressing is one of severe plastic deformation methods often used for...
AbstractStability of microstructure of ultrafine-grained materials under cyclic loading is a crucial...
The influence of stress- and strain-controlled loading on microstructure and cyclic plastic behaviou...
AbstractThis work presents the experimental characterization of the fatigue crack growth resistance ...
The Equal Channel Angular Pressing is a hardening treatment with which ductile metals can beprocesse...
Abstract: The equal channel angular pressing (ECAP) technique is now recognised for achieving very s...
AbstractStructural property relationship indicates the significance of Ultra Fine Grain (UFG) for at...
Mechanical and microstructural analysis of equal channel angular pressed copper was experimentally i...
This work presents the experimental results of fatigue crack growth resistance of ultrafine-grained ...
Oxygen-free copper of >99.95% purity was processed by equal-channel angular pressing at room tempera...
Electrolytic Tough Pitch (ETP) and Fire Refined High Conductivity (FRHC) copper samples were severel...