This paper demonstrates the recent extension of the Linear Matching Method (LMM) to include cyclic creep assessment [1] in application to a creep-fatigue analysis of a cruciform weldment made of the stainless steel AISI type 316N(L). The obtained results are compared with the results of experimental studies implemented by Bretherton et al. [2] with the overall objective to identify fatigue strength reduction factors (FSRF) of austenitic weldments for further design application. These studies included a series of strain-controlled tests at 550°C with different combinations of reversed bending moment and dwell time Δt. Five levels of reversed bending moment histories corresponding to defined values of total strain range Δεtot in remote parent...
The accurate assessment of creep-fatigue interaction is an important issue for industrial components...
Creep-fatigue and creep-ratcheting life assessment of an SS304 weldolet considering full creep-cycli...
As the energy demand increases the power industry has to enhance both efficiency and environmental s...
This paper demonstrates the recent extension of the Linear Matching Method (LMM) to include cyclic c...
This paper presents a creep-fatigue life assessment of a cruciform weldment made of the steel AISI t...
This paper is devoted to parametric study on creep-fatigue endurance of the steel type 316N(L) weldm...
This work is devoted to parametric study on creep-fatigue endurance of the steel AISI type 316N(L) w...
This poster discusses Creep-fatigue life assessment of high-temperature weldments using the linear m...
This paper presents parametric studies on creep-fatigue endurance of the steel AISI type 316N(L) wel...
The paper is concerned with the modeling of the behaviour of welds when subjected to severe thermal ...
This paper extends the previous Linear Matching Method (LMM) to allow for the evaluation of plastic,...
This paper presents a parametric study on creep-fatigue strength of the steel AISI type 316N(L) weld...
This paper presents a novel direct method, within the Linear Matching Method (LMM) framework, for th...
To meet the growing energy demands, the power sector continuously strives at enhancing the efficienc...
Creep-cyclic plasticity and creep-fatigue damage interaction of a welded flange are studied consider...
The accurate assessment of creep-fatigue interaction is an important issue for industrial components...
Creep-fatigue and creep-ratcheting life assessment of an SS304 weldolet considering full creep-cycli...
As the energy demand increases the power industry has to enhance both efficiency and environmental s...
This paper demonstrates the recent extension of the Linear Matching Method (LMM) to include cyclic c...
This paper presents a creep-fatigue life assessment of a cruciform weldment made of the steel AISI t...
This paper is devoted to parametric study on creep-fatigue endurance of the steel type 316N(L) weldm...
This work is devoted to parametric study on creep-fatigue endurance of the steel AISI type 316N(L) w...
This poster discusses Creep-fatigue life assessment of high-temperature weldments using the linear m...
This paper presents parametric studies on creep-fatigue endurance of the steel AISI type 316N(L) wel...
The paper is concerned with the modeling of the behaviour of welds when subjected to severe thermal ...
This paper extends the previous Linear Matching Method (LMM) to allow for the evaluation of plastic,...
This paper presents a parametric study on creep-fatigue strength of the steel AISI type 316N(L) weld...
This paper presents a novel direct method, within the Linear Matching Method (LMM) framework, for th...
To meet the growing energy demands, the power sector continuously strives at enhancing the efficienc...
Creep-cyclic plasticity and creep-fatigue damage interaction of a welded flange are studied consider...
The accurate assessment of creep-fatigue interaction is an important issue for industrial components...
Creep-fatigue and creep-ratcheting life assessment of an SS304 weldolet considering full creep-cycli...
As the energy demand increases the power industry has to enhance both efficiency and environmental s...