International audienceLean duplex stainless steels (LDSSs) with lower nickel and molybdenum are less susceptible to suffer spinodal decomposition than standard duplex stainless steels. It is the purpose of this work to study the effect of thermal embrittlement on the low cycle fatigue behaviour of 2 LDSSs with different Creq and Nieq. The correlation between the fatigue behaviour and the dislocation structure is attempted. Transmission electron microscopy was used to observe the dislocation microstructure. Additionally, STEM-EDS technique in conjunction with Vickers microhardness measurements was used to characterize the amplitude of the spinodal decomposition. The results show that the LDSS with lower Creq and Nieq values exhibits improved...
Duplex stainless steels (DSSs) are two-phase materials consisting of both the ferritic and the aus...
Two phase metals can suffer from non-uniform load sharing between the phases or stress heterogeneity...
SIGLEAvailable from British Library Document Supply Centre- DSC:D062048 / BLDSC - British Library Do...
The low-cycle fatigue behaviour of a duplex stainless steel was comparatively studied in standard he...
International audienceThe present work is focused on assessing the influence of dislocation movement...
In order to evaluate the effects that the “475° embrittlement” produces on the fatigue life during h...
The low cycle fatigue (LCF) behaviors of cast duplex stainless steel (CDSS) thermally aged at differ...
The present investigation is focused on assessing the effect of a thermal treatment for grain coarse...
Austenitic-ferritic (duplex) stainless steels are successfully used in chemical, nuclear, oil and ga...
This work is focused on the fatigue damage of lean duplex stainless steels (LDSSs) LDX 2101. Special...
<div><p>Duplex stainless steels (DSS) are Fe-Cr-Ni-Mo alloys, with low carbon content, which have a ...
AbstractAustenite and ferrite in duplex stainless steels have different physical and mechanical prop...
International audienceThe ferrite phase of cast duplex stainless steels becomes embrittled after the...
Duplex stainless steels (DSS) have become candidate materials for structural applications, where con...
Duplex austenitic/ferritic stainless steels are increasingly used as an alternative to conventional ...
Duplex stainless steels (DSSs) are two-phase materials consisting of both the ferritic and the aus...
Two phase metals can suffer from non-uniform load sharing between the phases or stress heterogeneity...
SIGLEAvailable from British Library Document Supply Centre- DSC:D062048 / BLDSC - British Library Do...
The low-cycle fatigue behaviour of a duplex stainless steel was comparatively studied in standard he...
International audienceThe present work is focused on assessing the influence of dislocation movement...
In order to evaluate the effects that the “475° embrittlement” produces on the fatigue life during h...
The low cycle fatigue (LCF) behaviors of cast duplex stainless steel (CDSS) thermally aged at differ...
The present investigation is focused on assessing the effect of a thermal treatment for grain coarse...
Austenitic-ferritic (duplex) stainless steels are successfully used in chemical, nuclear, oil and ga...
This work is focused on the fatigue damage of lean duplex stainless steels (LDSSs) LDX 2101. Special...
<div><p>Duplex stainless steels (DSS) are Fe-Cr-Ni-Mo alloys, with low carbon content, which have a ...
AbstractAustenite and ferrite in duplex stainless steels have different physical and mechanical prop...
International audienceThe ferrite phase of cast duplex stainless steels becomes embrittled after the...
Duplex stainless steels (DSS) have become candidate materials for structural applications, where con...
Duplex austenitic/ferritic stainless steels are increasingly used as an alternative to conventional ...
Duplex stainless steels (DSSs) are two-phase materials consisting of both the ferritic and the aus...
Two phase metals can suffer from non-uniform load sharing between the phases or stress heterogeneity...
SIGLEAvailable from British Library Document Supply Centre- DSC:D062048 / BLDSC - British Library Do...