Electrolytic Tough Pitch (ETP) and Fire Refined High Conductivity (FRHC) copper samples were severely deformed by equal channel angular pressing (ECAP) and the effect of plastic deformation on the microstructure, texture and fatigue was investigated. The microstructural behavior was determined by analysis of the final texture through Inverse Pole Figures (IPF) and Orientation Distribution Function (ODF) maps, which revealed a marked decrease in the normal grain size of the ECAPed coppers and also the presence of recrystallization processes. The effect of the initial texture on the evolution of the texture after 8 ECAP passes for the two coppers was also analyzed. The results showed that the annealed materials presented a marked anisotropy, ...
Abstract: The equal channel angular pressing (ECAP) technique is now recognised for achieving very s...
Fatigue behaviour of ultrafine-grained copper of 99.9% purity produced by equal channel angular pres...
The equal channel angular pressing (ECAP) technique is now recognised for achieving very significant...
Electrolytic Tough Pitch (ETP) and Fire Refined High Conductivity (FRHC) copper samples were severel...
This work deals with fatigue properties and stability of microstructure of ultrafine-grained (UFG) c...
Electrolytic tough pitch (ETP) and fire refined high conductivity (FRHC) copper samples were severel...
Electrolytic tough pitch (ETP) and fire refined high conductivity (FRHC) copper samples were severel...
Electrolytic tough pitch (ETP) and fire refined high conductivity (FRHC) copper samples were severe...
Fatigue behaviour of ultrafine-grained copper of high and low purity produced by means of equal chan...
AbstractStability of microstructure of ultrafine-grained materials under cyclic loading is a crucial...
In this article, commercially pure copper samples were severely deformed by equal channel angular pr...
Abstract. Equal channel angular pressing is one of severe plastic deformation methods often used for...
AbstractFatigue tests were conducted using copper processed by equal channel angular pressing (ECAP)...
Due to the character of the original source materials and the nature of batch digitization, quality ...
Abstract: The equal channel angular pressing (ECAP) technique is now recognised for achieving very s...
Abstract: The equal channel angular pressing (ECAP) technique is now recognised for achieving very s...
Fatigue behaviour of ultrafine-grained copper of 99.9% purity produced by equal channel angular pres...
The equal channel angular pressing (ECAP) technique is now recognised for achieving very significant...
Electrolytic Tough Pitch (ETP) and Fire Refined High Conductivity (FRHC) copper samples were severel...
This work deals with fatigue properties and stability of microstructure of ultrafine-grained (UFG) c...
Electrolytic tough pitch (ETP) and fire refined high conductivity (FRHC) copper samples were severel...
Electrolytic tough pitch (ETP) and fire refined high conductivity (FRHC) copper samples were severel...
Electrolytic tough pitch (ETP) and fire refined high conductivity (FRHC) copper samples were severe...
Fatigue behaviour of ultrafine-grained copper of high and low purity produced by means of equal chan...
AbstractStability of microstructure of ultrafine-grained materials under cyclic loading is a crucial...
In this article, commercially pure copper samples were severely deformed by equal channel angular pr...
Abstract. Equal channel angular pressing is one of severe plastic deformation methods often used for...
AbstractFatigue tests were conducted using copper processed by equal channel angular pressing (ECAP)...
Due to the character of the original source materials and the nature of batch digitization, quality ...
Abstract: The equal channel angular pressing (ECAP) technique is now recognised for achieving very s...
Abstract: The equal channel angular pressing (ECAP) technique is now recognised for achieving very s...
Fatigue behaviour of ultrafine-grained copper of 99.9% purity produced by equal channel angular pres...
The equal channel angular pressing (ECAP) technique is now recognised for achieving very significant...