To inform the design of superior transformation-induced plasticity (TRIP) steels, it is important to understand what happens at the microstructural length scales. In this study, strain-induced martensitic transformation is studied by in situ digital image correlation (DIC) in a scanning electron microscope. Digital image correlation at submicron length scales enables mapping of transformation strains with high confidence. These are correlated with electron backscatter diffraction (EBSD) prior to and post the deformation process to get a comprehensive understanding of the strain-induced transformation mechanism. The results are compared with mathematical models for enhanced prediction of strain-induced martensitic phase transformation
Formation and nucleation mechanisms (i.e. γ → ε, γ → α′, γ → deformation twins → ε → α′ and γ → ε → ...
304 stainless steel is an austenitic steel widely used for various applications due to a good combin...
Martensitic transformation plays a pivotal role in the microstructural evolution and plasticity of...
To inform the design of superior transformation-induced plasticity (TRIP) steels, it is important to...
Transformation-induced plasticity (TRIP) steels are an example of steels used in the automotive indu...
Microscopic strain and strain-induced phase transformation during plastic deformation in metastable ...
An extra low carbon martensitic stainless steel with 16% ultrafine grained metastable reverted auste...
AbstractIn-situ investigations of the cyclic deformation behavior of a metastable high-alloyed auste...
The martensitic phase transformation kinetics and its relation with texture evolution and deformatio...
Deformation-induced martensitic transformations are increasingly being used to create desirable mech...
Metastable stainless steels are promising engineering materials demonstrating good corrosion resista...
Electron backscatter diffraction (EBSD) was employed to establish microstructure evolution in type 3...
The use of high-energy synchrotron x-rays which has enabled three- dimensional structural characteri...
An inductive sensor developed by Philips ATC has been used to study in-situ the austenite (gamma) to...
New-generation multi-phase martensitic steels derive their high strength from the body-centered cubi...
Formation and nucleation mechanisms (i.e. γ → ε, γ → α′, γ → deformation twins → ε → α′ and γ → ε → ...
304 stainless steel is an austenitic steel widely used for various applications due to a good combin...
Martensitic transformation plays a pivotal role in the microstructural evolution and plasticity of...
To inform the design of superior transformation-induced plasticity (TRIP) steels, it is important to...
Transformation-induced plasticity (TRIP) steels are an example of steels used in the automotive indu...
Microscopic strain and strain-induced phase transformation during plastic deformation in metastable ...
An extra low carbon martensitic stainless steel with 16% ultrafine grained metastable reverted auste...
AbstractIn-situ investigations of the cyclic deformation behavior of a metastable high-alloyed auste...
The martensitic phase transformation kinetics and its relation with texture evolution and deformatio...
Deformation-induced martensitic transformations are increasingly being used to create desirable mech...
Metastable stainless steels are promising engineering materials demonstrating good corrosion resista...
Electron backscatter diffraction (EBSD) was employed to establish microstructure evolution in type 3...
The use of high-energy synchrotron x-rays which has enabled three- dimensional structural characteri...
An inductive sensor developed by Philips ATC has been used to study in-situ the austenite (gamma) to...
New-generation multi-phase martensitic steels derive their high strength from the body-centered cubi...
Formation and nucleation mechanisms (i.e. γ → ε, γ → α′, γ → deformation twins → ε → α′ and γ → ε → ...
304 stainless steel is an austenitic steel widely used for various applications due to a good combin...
Martensitic transformation plays a pivotal role in the microstructural evolution and plasticity of...