AbstractIn-situ investigations of the cyclic deformation behavior of a metastable high-alloyed austenitic stainless cast TRIP-steel (TRIP–effect; TRansformation Induced Plasticity) in a scanning electron microscope (SEM) are presented. Low cycle fatigue (LCF) tests of the metastable cast steel alloy at different strain amplitudes showed that three different kinds of cyclic softening/hardening behaviour can be distinguished caused by different microstructures. In-situ push-pull tests in the SEM at two different applied total strain amplitudes were carried out showing the evolution of the microstructure in dependence on the number of cycles. The phase transformation of the metastable austenite to the α′-martensite and changes in the microstru...
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...
Low alloy transformation-induced plasticity aided (TRIP) steels have attracted much interest over th...
AbstractIn-situ investigations of the cyclic deformation behavior of a metastable high-alloyed auste...
AbstractRoom-temperature total strain controlled low-cycle fatigue tests were carried out on two typ...
To inform the design of superior transformation-induced plasticity (TRIP) steels, it is important to...
AbstractRoom-temperature total strain controlled low-cycle fatigue tests were carried out on two typ...
To inform the design of superior transformation-induced plasticity (TRIP) steels, it is important to...
Microstructure inhomogeneities can strongly influence the mechanical properties of Advanced High Str...
Microstructure inhomogeneities can strongly influence the mechanical properties of advanced high-str...
Microstructure inhomogeneities can strongly influence the mechanical properties of advanced high-str...
The goal of the study consolidated in this thesis is to understand the mechanics in steels using mic...
Austenitic metastable stainless steels are a materials group distinguished by their excellent mechan...
Metastable austenitic stainless steels are an interesting group of materials, which exhibit the Tran...
Metastable austenitic stainless steels are an interesting group of materials, which exhibit the Tran...
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...
Low alloy transformation-induced plasticity aided (TRIP) steels have attracted much interest over th...
AbstractIn-situ investigations of the cyclic deformation behavior of a metastable high-alloyed auste...
AbstractRoom-temperature total strain controlled low-cycle fatigue tests were carried out on two typ...
To inform the design of superior transformation-induced plasticity (TRIP) steels, it is important to...
AbstractRoom-temperature total strain controlled low-cycle fatigue tests were carried out on two typ...
To inform the design of superior transformation-induced plasticity (TRIP) steels, it is important to...
Microstructure inhomogeneities can strongly influence the mechanical properties of Advanced High Str...
Microstructure inhomogeneities can strongly influence the mechanical properties of advanced high-str...
Microstructure inhomogeneities can strongly influence the mechanical properties of advanced high-str...
The goal of the study consolidated in this thesis is to understand the mechanics in steels using mic...
Austenitic metastable stainless steels are a materials group distinguished by their excellent mechan...
Metastable austenitic stainless steels are an interesting group of materials, which exhibit the Tran...
Metastable austenitic stainless steels are an interesting group of materials, which exhibit the Tran...
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...
Low alloy transformation-induced plasticity aided (TRIP) steels have attracted much interest over th...