The energy dissipated to the surroundings as heat in a unit volume of material per cycle, Q, was recently proposed as fatigue damage index, and it was successfully applied to rationalise fatigue data obtained by carrying out stress-controlled and strain-controlled fatigue tests on AISI 304 L stainless steel plain and hole specimens. In this paper, it is shown that the Q parameter is independent on thermal and mechanical boundary conditions occurring during experiments. After that, additional stress-controlled fatigue tests on plain and notched specimens characterised by smaller notch tip radii than those tested previously have been performed. Present data have been compared with previous ones, and it was found that all available results can...
In the recent past, the specific heat loss per cycle (Q parameter) was used to synthesise in a singl...
In the last years, a large amount of fatigue test results from plain and bluntly notched specimens m...
The specific heat loss per cycle (Q parameter) evaluated experimentally by means of the so-called co...
The energy dissipated to the surroundings as heat in a unit volume of material per cycle, Q, was rec...
The energy dissipated to the surroundings as heat for unit volume of material per cycle, Q, was rece...
Development of experimental equipments able to provide the whole temperature field have given impuls...
In previously published papers by the authors, the specific heat energy loss per cycle (the Q parame...
The energy dissipated to the surroundings as heat in a unit volume of material per cycle, Q, was rec...
AbstractIn previously published papers by the authors, the specific heat energy loss per cycle (the ...
Determination of fatigue limit under uniaxial tests based on the experimental measurement of materia...
Fatigue of metallic materials is a dissipative phenomenon involving plastic deformations that requir...
Determination of fatigue limit based on the experimental measurement of material thermal increments ...
In previous papers, the energy dissipated to the surroundings as heat in a unit volume of material p...
The constant amplitude, zero-mean stress, axial-fatigue behaviour of plain and bluntly notched AISI ...
The specific heat loss per cycle (Q parameter) was used in previous works to synthesise more than on...
In the recent past, the specific heat loss per cycle (Q parameter) was used to synthesise in a singl...
In the last years, a large amount of fatigue test results from plain and bluntly notched specimens m...
The specific heat loss per cycle (Q parameter) evaluated experimentally by means of the so-called co...
The energy dissipated to the surroundings as heat in a unit volume of material per cycle, Q, was rec...
The energy dissipated to the surroundings as heat for unit volume of material per cycle, Q, was rece...
Development of experimental equipments able to provide the whole temperature field have given impuls...
In previously published papers by the authors, the specific heat energy loss per cycle (the Q parame...
The energy dissipated to the surroundings as heat in a unit volume of material per cycle, Q, was rec...
AbstractIn previously published papers by the authors, the specific heat energy loss per cycle (the ...
Determination of fatigue limit under uniaxial tests based on the experimental measurement of materia...
Fatigue of metallic materials is a dissipative phenomenon involving plastic deformations that requir...
Determination of fatigue limit based on the experimental measurement of material thermal increments ...
In previous papers, the energy dissipated to the surroundings as heat in a unit volume of material p...
The constant amplitude, zero-mean stress, axial-fatigue behaviour of plain and bluntly notched AISI ...
The specific heat loss per cycle (Q parameter) was used in previous works to synthesise more than on...
In the recent past, the specific heat loss per cycle (Q parameter) was used to synthesise in a singl...
In the last years, a large amount of fatigue test results from plain and bluntly notched specimens m...
The specific heat loss per cycle (Q parameter) evaluated experimentally by means of the so-called co...