The influence of equal channel angular pressing (ECAP) on the corrosion fatigue behaviour of an Al-Mg-Si alloy was studied. Preliminary fatigue tests in air showed an increase in fatigue lifetime for ECAP samples, as compared to as-received samples, related to the ECAP-induced grain refinement. After pre-corrosion, the fatigue lifetime was lower for ECAP samples than for as-received samples, because the fragmentation of coarse intermetallics during ECAP led to an increase in the density of corrosion defects.C orrosion fatigue tests demonstrated a synergy between cyclic mechanical loading and corrosion processes for all samples; a deleterious effect of ECAP was also noted
The present research investigates the effect of Severe Plastic Deformation (SPD) on the mechanical p...
The present research investigates the effect of Severe Plastic Deformation (SPD) on the mechanical p...
The effects of equal channel angular pressing (ECAP) and subsequent heat treatment on the low cycle ...
The recent awareness of the impact of industrial activities on health and environment initiated a ne...
An innovative solution for the automotive industry is to replace the copper used for wiring harnesse...
One of the serious problems encountered in the use of various materials in technology is the occurre...
Aluminium 2014 alloy solutionized at 495°C, aged at 195°C was subjected to Equal Channel Angular Pre...
Fatigue corrosion phenomenon is a form of degradation that is because of the combined occurrence of ...
La récente prise de conscience de l’impact des activités industrielles sur l’environnement et la san...
Corrosion has been and still is a worldwide problem today. Not only has it cost governments and comp...
Corrosion has always been a concern in the manufacturing industry as it shortens the lifespan of a m...
© 2015, Institute of Problems of Mechanical Engineering. The impact of equal-channel angular pressin...
The aim had been to study changes in the properties of aluminium alloy AlSiMgMn. Influence of SPD of...
ECAP (Equal Channel Angular Pressing) is a technique used to enhance the strength of material by gra...
The fatigue behaviour of Aluminium–Copper–Lithium 2050 alloy under two metallurgical states (T34 and...
The present research investigates the effect of Severe Plastic Deformation (SPD) on the mechanical p...
The present research investigates the effect of Severe Plastic Deformation (SPD) on the mechanical p...
The effects of equal channel angular pressing (ECAP) and subsequent heat treatment on the low cycle ...
The recent awareness of the impact of industrial activities on health and environment initiated a ne...
An innovative solution for the automotive industry is to replace the copper used for wiring harnesse...
One of the serious problems encountered in the use of various materials in technology is the occurre...
Aluminium 2014 alloy solutionized at 495°C, aged at 195°C was subjected to Equal Channel Angular Pre...
Fatigue corrosion phenomenon is a form of degradation that is because of the combined occurrence of ...
La récente prise de conscience de l’impact des activités industrielles sur l’environnement et la san...
Corrosion has been and still is a worldwide problem today. Not only has it cost governments and comp...
Corrosion has always been a concern in the manufacturing industry as it shortens the lifespan of a m...
© 2015, Institute of Problems of Mechanical Engineering. The impact of equal-channel angular pressin...
The aim had been to study changes in the properties of aluminium alloy AlSiMgMn. Influence of SPD of...
ECAP (Equal Channel Angular Pressing) is a technique used to enhance the strength of material by gra...
The fatigue behaviour of Aluminium–Copper–Lithium 2050 alloy under two metallurgical states (T34 and...
The present research investigates the effect of Severe Plastic Deformation (SPD) on the mechanical p...
The present research investigates the effect of Severe Plastic Deformation (SPD) on the mechanical p...
The effects of equal channel angular pressing (ECAP) and subsequent heat treatment on the low cycle ...