A frequency-domain critical plane criterion is here employed to estimate fatigue life of smooth metallic structural components under multiaxial random loading. The procedure set out in the present paper consists of the following three steps: (i) definition of the critical plane; (ii) PSD evaluation of an equivalent normal stress; (iii) determination of fatigue life. The criterion is theoretically developed and numerically validated by employing experimental fatigue results for structural steel subjected to combined bending and torsion
Engineering structures and components are often subjected to random fatigue loading produced, for ex...
Engineering structures and components are often subjected to random fatigue loading produced, for e...
Damage in offshore structures is mainly due to fatigue multiaxial stress state at structural joints,...
A frequency-domain critical plane criterion is here employed to estimate fatigue life of smooth meta...
A frequency-domain critical-plane criterion is reformulated in order to improve its accuracy in term...
A frequency-domain critical plane criterion is here proposed to estimate fatigue life of smooth meta...
In the present paper, a new computationally-efficient frequency domain formulation of the critical p...
In the present paper, two critical plane-based criteria proposed by Carpinteri et al. are discussed....
A frequency-domain High-Cycle Fatigue (HCF) criterion based on the critical plane approach is here p...
A multiaxial fatigue criterion for metals subjected to random loading is presented. Accordingly, the...
A multiaxial fatigue criterion for random loading is presented. Firstly, the orientation of the cri...
In the present paper, a new computationally-efficient frequency domain formulation of the critical p...
Fatigue life of different metallic materials under multiaxial loading is evaluated by employing the ...
Structures and mechanical components are frequently subjected to time-varying loading characterised...
The myriad applicability of the frequency-domain critical plane criterion is outlined in order to ev...
Engineering structures and components are often subjected to random fatigue loading produced, for ex...
Engineering structures and components are often subjected to random fatigue loading produced, for e...
Damage in offshore structures is mainly due to fatigue multiaxial stress state at structural joints,...
A frequency-domain critical plane criterion is here employed to estimate fatigue life of smooth meta...
A frequency-domain critical-plane criterion is reformulated in order to improve its accuracy in term...
A frequency-domain critical plane criterion is here proposed to estimate fatigue life of smooth meta...
In the present paper, a new computationally-efficient frequency domain formulation of the critical p...
In the present paper, two critical plane-based criteria proposed by Carpinteri et al. are discussed....
A frequency-domain High-Cycle Fatigue (HCF) criterion based on the critical plane approach is here p...
A multiaxial fatigue criterion for metals subjected to random loading is presented. Accordingly, the...
A multiaxial fatigue criterion for random loading is presented. Firstly, the orientation of the cri...
In the present paper, a new computationally-efficient frequency domain formulation of the critical p...
Fatigue life of different metallic materials under multiaxial loading is evaluated by employing the ...
Structures and mechanical components are frequently subjected to time-varying loading characterised...
The myriad applicability of the frequency-domain critical plane criterion is outlined in order to ev...
Engineering structures and components are often subjected to random fatigue loading produced, for ex...
Engineering structures and components are often subjected to random fatigue loading produced, for e...
Damage in offshore structures is mainly due to fatigue multiaxial stress state at structural joints,...