Microstructure inhomogeneities can strongly influence the mechanical properties of advanced high-strength steels in a detrimental manner. This study of a transformation-induced plasticity (TRIP) steel investigates the effect of pre-existing contiguous grain boundary networks (CGBNs) of hard second-phases and shows how these develop into bands during tensile testing using in situ observations in conjunction with digital image correlation (DIC). The bands form by the lateral contraction of the soft ferrite matrix, which rotates and displaces the CGBNs of second-phases and the individual features within them to become aligned with the loading direction. The more extensive pre-existing CGBNs that were before the deformation already aligned with...
TRIP-assisted steel with a composition of 0.2 %C, 1.5 %Mn, 1.5 % Al was studied in the undeformed st...
Transformation-induced plasticity (TRIP) behavior was studied in steel with the composition Fe-0.07C...
Ferritic–martensitic dual phase (DP) steels deform spatially in a highly heterogeneous manner, i.e. ...
Microstructure inhomogeneities can strongly influence the mechanical properties of Advanced High Str...
The microstructure of transformation induced plasticity (TRIP) and dual phase (DP) multiphase steels...
AbstractIn-situ investigations of the cyclic deformation behavior of a metastable high-alloyed auste...
Low alloy transformation-induced plasticity aided (TRIP) steels have attracted much interest over th...
To inform the design of superior transformation-induced plasticity (TRIP) steels, it is important to...
The improvement of the mechanical behaviour of high performance steels brings about a renewed intere...
Two-dimensional distributions of microstructural characteristics of austenite (γ) around the Lüders ...
The mechanical behaviour of transformation-induced plasticity (TRIP)-assisted multiphase steels is a...
The goal of the study consolidated in this thesis is to understand the mechanics in steels using mic...
The martensitic transformation behaviour of the metastable austenite phase in low-alloyed transforma...
MasterHigh Mn steels have been assessed in exceptional ability of high tensile stress with good duct...
TRIP-assisted multiphase steels exhibit enhanced strength and ductility properties. These properties...
TRIP-assisted steel with a composition of 0.2 %C, 1.5 %Mn, 1.5 % Al was studied in the undeformed st...
Transformation-induced plasticity (TRIP) behavior was studied in steel with the composition Fe-0.07C...
Ferritic–martensitic dual phase (DP) steels deform spatially in a highly heterogeneous manner, i.e. ...
Microstructure inhomogeneities can strongly influence the mechanical properties of Advanced High Str...
The microstructure of transformation induced plasticity (TRIP) and dual phase (DP) multiphase steels...
AbstractIn-situ investigations of the cyclic deformation behavior of a metastable high-alloyed auste...
Low alloy transformation-induced plasticity aided (TRIP) steels have attracted much interest over th...
To inform the design of superior transformation-induced plasticity (TRIP) steels, it is important to...
The improvement of the mechanical behaviour of high performance steels brings about a renewed intere...
Two-dimensional distributions of microstructural characteristics of austenite (γ) around the Lüders ...
The mechanical behaviour of transformation-induced plasticity (TRIP)-assisted multiphase steels is a...
The goal of the study consolidated in this thesis is to understand the mechanics in steels using mic...
The martensitic transformation behaviour of the metastable austenite phase in low-alloyed transforma...
MasterHigh Mn steels have been assessed in exceptional ability of high tensile stress with good duct...
TRIP-assisted multiphase steels exhibit enhanced strength and ductility properties. These properties...
TRIP-assisted steel with a composition of 0.2 %C, 1.5 %Mn, 1.5 % Al was studied in the undeformed st...
Transformation-induced plasticity (TRIP) behavior was studied in steel with the composition Fe-0.07C...
Ferritic–martensitic dual phase (DP) steels deform spatially in a highly heterogeneous manner, i.e. ...