The fatigue properties of multiphase steels are an important consideration in the automotive industry. The different microstructural phases present in these steels can influence the strain life and cyclic stabilized strength of the material due to the way in which these phases accommodate the applied cyclic strain. Fully reversed strain-controlled low-cycle fatigue tests have been used to determine the mechanical fatigue performance of a dual-phase (DP) 590 and transformation-induced plasticity (TRIP) 780 steel, with transmission electron microscopy (TEM) used to examine the deformed microstructures. It is shown that the higher strain life and cyclic stabilized strength of the TRIP steel can be attributed to an increased yield strength. Des...
In this paper, the results of a study aimed at understanding the specific role of microstructure on ...
The mechanical behaviour of transformation-induced plasticity (TRIP)-assisted multiphase steels is a...
The low cycle fatigue (LCF) behaviour of a dual phase (DP) steel with different martensite volume fr...
The widespread introduction of multiphase sheet steels in the automotive industry has led to conside...
An electron backscatter diffraction (EBSD) study of the microstructure of TRIP steel during fatigue ...
AbstractRoom-temperature total strain controlled low-cycle fatigue tests were carried out on two typ...
In the context of sustainable development, steelmakers and automotive manufacturers decided for some...
Total strain-controlled low-cycle fatigue tests were performed at room temperature on a high alloyed...
The microstructure of transformation induced plasticity (TRIP) and dual phase (DP) multiphase steels...
In this paper, the results of an experimental study that focused on evaluating the conjoint influenc...
The results of a recent study aimed at understanding the conjoint influence of load ratio and micros...
The focus of this technical manuscript is a record of the specific role of microstructure and test s...
This study examines the cyclic plastic deformation behavior and microstructural development of a dua...
AbstractIn-situ investigations of the cyclic deformation behavior of a metastable high-alloyed auste...
Multiphase ferrite-bainite-martensite (F-B-M) microstructure was obtained in medium carbon Vmicroall...
In this paper, the results of a study aimed at understanding the specific role of microstructure on ...
The mechanical behaviour of transformation-induced plasticity (TRIP)-assisted multiphase steels is a...
The low cycle fatigue (LCF) behaviour of a dual phase (DP) steel with different martensite volume fr...
The widespread introduction of multiphase sheet steels in the automotive industry has led to conside...
An electron backscatter diffraction (EBSD) study of the microstructure of TRIP steel during fatigue ...
AbstractRoom-temperature total strain controlled low-cycle fatigue tests were carried out on two typ...
In the context of sustainable development, steelmakers and automotive manufacturers decided for some...
Total strain-controlled low-cycle fatigue tests were performed at room temperature on a high alloyed...
The microstructure of transformation induced plasticity (TRIP) and dual phase (DP) multiphase steels...
In this paper, the results of an experimental study that focused on evaluating the conjoint influenc...
The results of a recent study aimed at understanding the conjoint influence of load ratio and micros...
The focus of this technical manuscript is a record of the specific role of microstructure and test s...
This study examines the cyclic plastic deformation behavior and microstructural development of a dua...
AbstractIn-situ investigations of the cyclic deformation behavior of a metastable high-alloyed auste...
Multiphase ferrite-bainite-martensite (F-B-M) microstructure was obtained in medium carbon Vmicroall...
In this paper, the results of a study aimed at understanding the specific role of microstructure on ...
The mechanical behaviour of transformation-induced plasticity (TRIP)-assisted multiphase steels is a...
The low cycle fatigue (LCF) behaviour of a dual phase (DP) steel with different martensite volume fr...