Metallic materials frequently undergo fatigue failure during long term service. Therefore, the study of fatigue performance detection methods with high precision and wide application ranges is crucial to reduce fatigue failures and accidents of materials and structures. In this study, a plastic strain incremental energy dissipation theory (PSIEDT) is established, and a general expression for fatigue limit is derived with the starting point of the plastic strain increment. Taking 42CrMo4 steel as an example, and its temperature and deformation fields are obtained synchronously using infrared thermal imaging and digital image correlation. Its fatigue limit is evaluated using the energy dissipation theory based on the plastic strain increment....
Determination of fatigue limit by traditional method is associated with testing of large number of s...
A heat energy dissipation approach has been formulated to assess the crack propagation rate of mode ...
Estimation of the fatigue limit for steel ductile materials using non-destructive methods is a topic...
Fatigue is an irreversible process, accompanied by microstructural changes, localized plastic strain...
An accurate knowledge of the fatigue limit plays an important role in the fatigue structural design....
The low-cycle deformation of 304L austenitic stainless steel was examined in terms of energy convers...
Determining the fatigue behaviour of metallic materials using standardised testing methods is costly...
Combining thermography and Digital Image Correlation (DIC) measurements, this paper aims to experime...
The fatigue limit of a high strength steel (GCr15) with two strength levels (2372 MPa and 1044 MPa) ...
The technique of rapid evaluation of fatigue limit using infrared thermography was developed and has...
The paper aims to illustrate three advantages of infrared thermography as a non-destructive, real-ti...
The paper aims to illustrate three advantages of infrared thermography as a non-destructive, real-ti...
AbstractThe evaluation of the temperature rising during a fatigue test is extremely important to def...
Determination of fatigue limit by traditional method is associated with testing of large number of s...
A heat energy dissipation approach has been formulated to assess the crack propagation rate of mode ...
Estimation of the fatigue limit for steel ductile materials using non-destructive methods is a topic...
Fatigue is an irreversible process, accompanied by microstructural changes, localized plastic strain...
An accurate knowledge of the fatigue limit plays an important role in the fatigue structural design....
The low-cycle deformation of 304L austenitic stainless steel was examined in terms of energy convers...
Determining the fatigue behaviour of metallic materials using standardised testing methods is costly...
Combining thermography and Digital Image Correlation (DIC) measurements, this paper aims to experime...
The fatigue limit of a high strength steel (GCr15) with two strength levels (2372 MPa and 1044 MPa) ...
The technique of rapid evaluation of fatigue limit using infrared thermography was developed and has...
The paper aims to illustrate three advantages of infrared thermography as a non-destructive, real-ti...
The paper aims to illustrate three advantages of infrared thermography as a non-destructive, real-ti...
AbstractThe evaluation of the temperature rising during a fatigue test is extremely important to def...
Determination of fatigue limit by traditional method is associated with testing of large number of s...
A heat energy dissipation approach has been formulated to assess the crack propagation rate of mode ...
Estimation of the fatigue limit for steel ductile materials using non-destructive methods is a topic...