The fatigue behaviour is examined in terms of calorimetric effects. Aluminum alloy and steel have been chosen as reference materials. Heat sources accompanying the fatigue mechanisms are derived from thermal images provided by an infrared camera. A processing method allows identifying separately thermoelastic and dissipative sources. Thermoelastic effects are compared to theoretical predictions given by the basic, linear, isotropic thermoelastic model. Dissipation amplitudes are analyzed as a function of the loading frequency and stress amplitude applied to the fatigue specimen. Finally, the heterogeneous character of the fatigue development is studied both in terms of thermoelastic and dissipation sources
WOSInternational audienceFrom infra-red thermography, a quantitative analysis of heat dissipation so...
Methods and techniques presented in literature for studying the fatigue behaviour of materials invo...
AbstractThe theoretical approach developed in the companion paper is applied to the temperature sign...
International audienceThe fatigue behaviour is examined in terms of calorimetric effects. Aluminum a...
International audienceThe fatigue of dual phase steel was examined in terms of calorimetr...
The aim of the paper is the calorimetric detection of fatigue localization zones for an aluminium al...
This paper deals with the calorimetric analysis of fatigue mechanisms of an aluminium alloy. Local 1...
Fatigue damage onset involves a transformation of mechanical energy. This is in part spent into work...
In this paper the fatigue phenomena of 2024 T3 alumium alloy were studied in terms of calorimetric a...
This thesis presents an experimental protocol developed to perform complete energy balances during t...
The infrared and structural investigations of energy dissipation processes in metals subjected to cy...
International audienceThis paper presents several properties of heat source fields accompanying the ...
The monitoring of a heat dissipation process can give an important information about kinetics of def...
AbstractThe cyclic behavior of materials often shows stabilized hysteretic responses. The present pa...
The work is devoted to experimental study of heat flow evolution at the fatigue crack tip during bia...
WOSInternational audienceFrom infra-red thermography, a quantitative analysis of heat dissipation so...
Methods and techniques presented in literature for studying the fatigue behaviour of materials invo...
AbstractThe theoretical approach developed in the companion paper is applied to the temperature sign...
International audienceThe fatigue behaviour is examined in terms of calorimetric effects. Aluminum a...
International audienceThe fatigue of dual phase steel was examined in terms of calorimetr...
The aim of the paper is the calorimetric detection of fatigue localization zones for an aluminium al...
This paper deals with the calorimetric analysis of fatigue mechanisms of an aluminium alloy. Local 1...
Fatigue damage onset involves a transformation of mechanical energy. This is in part spent into work...
In this paper the fatigue phenomena of 2024 T3 alumium alloy were studied in terms of calorimetric a...
This thesis presents an experimental protocol developed to perform complete energy balances during t...
The infrared and structural investigations of energy dissipation processes in metals subjected to cy...
International audienceThis paper presents several properties of heat source fields accompanying the ...
The monitoring of a heat dissipation process can give an important information about kinetics of def...
AbstractThe cyclic behavior of materials often shows stabilized hysteretic responses. The present pa...
The work is devoted to experimental study of heat flow evolution at the fatigue crack tip during bia...
WOSInternational audienceFrom infra-red thermography, a quantitative analysis of heat dissipation so...
Methods and techniques presented in literature for studying the fatigue behaviour of materials invo...
AbstractThe theoretical approach developed in the companion paper is applied to the temperature sign...