Based on the twin bridge shear specimen, the cyclic shear experiments were performed on 1.2 mm thin plates of 316L metastable austenitic stainless steel with different strain amplitudes from 1 to 5% at ambient temperature. The fatigue behavior of 316L stainless steel under the cyclic shear path was studied, and the microscopic evolution of the material was analyzed. The results show that the cyclic stress response of 316L stainless steel exhibited cyclic hardening, saturation and cyclic softening, and the fatigue life is negatively correlated with the strain amplitude. The microstructure was analyzed by using electron back-scattered diffraction (EBSD). It was found that grain refinement and martensitic transformation during the deformation ...
AbstractThe cyclic deformation behaviour of an austenitic stainless steel and its links with microst...
Strain controlled fatigue test of widely used 316L stainless steel because of Excellent corrosion re...
Abstract Low cycle fatigue (LCF) behaviour of metastable austenitic 301LN stainless steel with diffe...
Cyclic stress-strain response and fatigue damage character has been investigated in austenitic stain...
Fatigue crack initiation and growth study in 316L austenitic stainless steel was made in cyclic\ntor...
The effects of loading path and strain amplitude ratio on the cyclic behavior and fatigue life were ...
Low cycle fatigue tests were carried for 316 L stainless steel and the material cyclic property was ...
Austenite and duplex stainless steels are widely used in engineering, and the latter exhibits a more...
This article discusses cyclic hardening and fatigue behaviors of stainless steel 304L, the behavior ...
In the present investigation, the effect of crystallographic texture on deformation and failure mech...
International audienceCyclic behaviour prediction of materials and structures is always of great int...
AbstractLow cycle fatigue tests were carried out on 316 L(N) stainless steel at room temperature emp...
Total strain controlled low cycle fatigue tests on 316L(N) stainless steel have been conducted in ai...
The effect of 20% prior cold work on low cycle fatigue (LCF) behaviour of type 316L(N) stainless ste...
In this work, the effect of surface mechanical attrition treatment (SMAT) on the cyclic behaviour of...
AbstractThe cyclic deformation behaviour of an austenitic stainless steel and its links with microst...
Strain controlled fatigue test of widely used 316L stainless steel because of Excellent corrosion re...
Abstract Low cycle fatigue (LCF) behaviour of metastable austenitic 301LN stainless steel with diffe...
Cyclic stress-strain response and fatigue damage character has been investigated in austenitic stain...
Fatigue crack initiation and growth study in 316L austenitic stainless steel was made in cyclic\ntor...
The effects of loading path and strain amplitude ratio on the cyclic behavior and fatigue life were ...
Low cycle fatigue tests were carried for 316 L stainless steel and the material cyclic property was ...
Austenite and duplex stainless steels are widely used in engineering, and the latter exhibits a more...
This article discusses cyclic hardening and fatigue behaviors of stainless steel 304L, the behavior ...
In the present investigation, the effect of crystallographic texture on deformation and failure mech...
International audienceCyclic behaviour prediction of materials and structures is always of great int...
AbstractLow cycle fatigue tests were carried out on 316 L(N) stainless steel at room temperature emp...
Total strain controlled low cycle fatigue tests on 316L(N) stainless steel have been conducted in ai...
The effect of 20% prior cold work on low cycle fatigue (LCF) behaviour of type 316L(N) stainless ste...
In this work, the effect of surface mechanical attrition treatment (SMAT) on the cyclic behaviour of...
AbstractThe cyclic deformation behaviour of an austenitic stainless steel and its links with microst...
Strain controlled fatigue test of widely used 316L stainless steel because of Excellent corrosion re...
Abstract Low cycle fatigue (LCF) behaviour of metastable austenitic 301LN stainless steel with diffe...