AbstractRoom-temperature total strain controlled low-cycle fatigue tests were carried out on two types of high alloyed metastable austenitic cast TRIP steels with different chemical compositions resulting in different austenite stabilities. The cyclic stress response revealed combinations of cyclic hardening, saturation and cyclic softening, depending on the applied total strain amplitude. In the case of the more metastable TRIP steel a considerable amount of deformation-induced α′-martensite is responsible for a high degree of cyclic hardening. Conversely, the more stable TRIP steel shows also a high degree of hardening without a significant transformation of austenite into α′-martensite, however at significantly higher strain amplitudes. ...
This study presents the results of a detailed investigation of metastability and susceptibility to d...
This study presents the results of a detailed investigation of metastability and susceptibility to d...
Quantification, formation and nucleation micro-mechanisms of deformation induced martensite during l...
AbstractRoom-temperature total strain controlled low-cycle fatigue tests were carried out on two typ...
Total strain-controlled low-cycle fatigue tests were performed at room temperature on a high alloyed...
Total strain-controlled low-cycle fatigue tests were performed at room temperature on a high alloyed...
AbstractIn-situ investigations of the cyclic deformation behavior of a metastable high-alloyed auste...
The high cycle fatigue behavior and the role of austenite stability on fatigue performance of low-al...
The widespread introduction of multiphase sheet steels in the automotive industry has led to conside...
The fatigue properties of multiphase steels are an important consideration in the automotive industr...
Metastable austenitic stainless steels, and in particular the TRansformation Induced Plasticity stee...
Metastable austenitic stainless steels, and in particular the TRansformation Induced Plasticity stee...
AbstractIn-situ investigations of the cyclic deformation behavior of a metastable high-alloyed auste...
The role of austenite stability on fatigue performance of low-alloy TRIP steel 700 has been experime...
This study presents the results of a detailed investigation of metastability and susceptibility to d...
This study presents the results of a detailed investigation of metastability and susceptibility to d...
This study presents the results of a detailed investigation of metastability and susceptibility to d...
Quantification, formation and nucleation micro-mechanisms of deformation induced martensite during l...
AbstractRoom-temperature total strain controlled low-cycle fatigue tests were carried out on two typ...
Total strain-controlled low-cycle fatigue tests were performed at room temperature on a high alloyed...
Total strain-controlled low-cycle fatigue tests were performed at room temperature on a high alloyed...
AbstractIn-situ investigations of the cyclic deformation behavior of a metastable high-alloyed auste...
The high cycle fatigue behavior and the role of austenite stability on fatigue performance of low-al...
The widespread introduction of multiphase sheet steels in the automotive industry has led to conside...
The fatigue properties of multiphase steels are an important consideration in the automotive industr...
Metastable austenitic stainless steels, and in particular the TRansformation Induced Plasticity stee...
Metastable austenitic stainless steels, and in particular the TRansformation Induced Plasticity stee...
AbstractIn-situ investigations of the cyclic deformation behavior of a metastable high-alloyed auste...
The role of austenite stability on fatigue performance of low-alloy TRIP steel 700 has been experime...
This study presents the results of a detailed investigation of metastability and susceptibility to d...
This study presents the results of a detailed investigation of metastability and susceptibility to d...
This study presents the results of a detailed investigation of metastability and susceptibility to d...
Quantification, formation and nucleation micro-mechanisms of deformation induced martensite during l...