AISI 316L stainless steels are widely employed in applications where durability is crucial. For this reason, an accurate prediction of its behaviour is of paramount importance. In this work, the spotlight is on the cyclic response and low-cycle fatigue performance of this material, at room temperature. Particularly, the first aim of this work is to experimentally test this material and use the results as input to calibrate the parameters involved in a kinematic and isotropic nonlinear plasticity model (Chaboche and Voce). This procedure is conducted through a newly developed calibration procedure to minimise the parameter estimates errors. Experimental data are eventually used also to estimate the strain–life curve, namely the Manson–Coffin...
The present work aims to predict the cyclic behavior and fatigue life of 316 FR stainless steel spec...
An experimental programme of cyclic mechanical testing of a 316 stainless steel, at temperatures up ...
A programme of cyclic mechanical testing of a 316 stainless steel, at temperatures of up to 600 °C u...
AISI 316L stainless steels are widely employed in applications where durability is crucial. For this...
none6This paper presents experimental results aimed at characterizing and modeling the elastoplastic...
An energy-based low-cycle fatigue model was proposed for applications at a range of temperatures. An...
Abstract. Low-cycle fatigue tests were carried out in air in a wide temperature range from room temp...
Low cycle fatigue tests were carried for 316 L stainless steel and the material cyclic property was ...
Strain controlled fatigue test of widely used 316L stainless steel because of Excellent corrosion re...
AbstractLow cycle fatigue tests were carried out on 316 L(N) stainless steel at room temperature emp...
The effect of 20% prior cold work on low cycle fatigue (LCF) behaviour of type 316L(N) stainless ste...
This work investigated and predicted the fatigue life durability of Austenitic Stainless Steel 316L ...
Cylindrical specimens of austenitic stainless steel AISI 321 were cyclically strained under total st...
Mechanical components are frequently subjected to severe cyclic pressure and/or temperature loadings...
An experimental programme of cyclic mechanical testing of a 316 stainless steel, at temperatures up ...
The present work aims to predict the cyclic behavior and fatigue life of 316 FR stainless steel spec...
An experimental programme of cyclic mechanical testing of a 316 stainless steel, at temperatures up ...
A programme of cyclic mechanical testing of a 316 stainless steel, at temperatures of up to 600 °C u...
AISI 316L stainless steels are widely employed in applications where durability is crucial. For this...
none6This paper presents experimental results aimed at characterizing and modeling the elastoplastic...
An energy-based low-cycle fatigue model was proposed for applications at a range of temperatures. An...
Abstract. Low-cycle fatigue tests were carried out in air in a wide temperature range from room temp...
Low cycle fatigue tests were carried for 316 L stainless steel and the material cyclic property was ...
Strain controlled fatigue test of widely used 316L stainless steel because of Excellent corrosion re...
AbstractLow cycle fatigue tests were carried out on 316 L(N) stainless steel at room temperature emp...
The effect of 20% prior cold work on low cycle fatigue (LCF) behaviour of type 316L(N) stainless ste...
This work investigated and predicted the fatigue life durability of Austenitic Stainless Steel 316L ...
Cylindrical specimens of austenitic stainless steel AISI 321 were cyclically strained under total st...
Mechanical components are frequently subjected to severe cyclic pressure and/or temperature loadings...
An experimental programme of cyclic mechanical testing of a 316 stainless steel, at temperatures up ...
The present work aims to predict the cyclic behavior and fatigue life of 316 FR stainless steel spec...
An experimental programme of cyclic mechanical testing of a 316 stainless steel, at temperatures up ...
A programme of cyclic mechanical testing of a 316 stainless steel, at temperatures of up to 600 °C u...