This paper discusses some experimental results on the influence of grain refinement on the final mechanical properties of IF and microalloyed steels designed for auto-body components. It shows also some modeling approaches to understanding the dynamic behavior of fine-rained materials. The Zerilli–Armstrong (Z–A) and Khan–Huang–Liang (KHL) models for studied steels were implemented into FEM code in order to simulate the dynamic compression tests with different strain rates.<br /
The effects of thermomechanical processing (TMP) on the mechanical response of microalloyed steels s...
In the present paper the basic strengthening mechanisms operating in microstructures are discussed w...
A computational modeling for predicting microstructure evolutions and mechanical properties of steel...
In the present paper the effect of grain refinement on the dynamic response of ultra fine-grained (U...
This study presents some aspects of multiscale analysis and modeling of variously structured materia...
This paper presents a descriptive model to explain the mechanisms involved in the development of ult...
The uniaxial tensile loading tests of coarse-grained D6A steel (CG, d = 20 μm) and fine-grained D6A ...
The goal of the present work was to study the effect of grain size and strain rate on the mechanic...
As the number of available, advanced high-strength metallic materials possibilities increases due to...
In the transportation industry, weight reduction is essential in order to reduce fuel consumption. A...
Current needs in the design and optimization of complex ballistic protection structures lead to the ...
The microstructure evolution of a martensitic Stainless steel subjected to hot compression is simula...
The aim of this study is to establish an integrated material modelling approach, micro, macro and co...
The deformation behavior of lightweight Fe-35Mn-10Al-1C steel with an elevated concentration of Mn w...
The majority of methods of severe plastic deformation (SPD) used for producing ultra-fine grained (U...
The effects of thermomechanical processing (TMP) on the mechanical response of microalloyed steels s...
In the present paper the basic strengthening mechanisms operating in microstructures are discussed w...
A computational modeling for predicting microstructure evolutions and mechanical properties of steel...
In the present paper the effect of grain refinement on the dynamic response of ultra fine-grained (U...
This study presents some aspects of multiscale analysis and modeling of variously structured materia...
This paper presents a descriptive model to explain the mechanisms involved in the development of ult...
The uniaxial tensile loading tests of coarse-grained D6A steel (CG, d = 20 μm) and fine-grained D6A ...
The goal of the present work was to study the effect of grain size and strain rate on the mechanic...
As the number of available, advanced high-strength metallic materials possibilities increases due to...
In the transportation industry, weight reduction is essential in order to reduce fuel consumption. A...
Current needs in the design and optimization of complex ballistic protection structures lead to the ...
The microstructure evolution of a martensitic Stainless steel subjected to hot compression is simula...
The aim of this study is to establish an integrated material modelling approach, micro, macro and co...
The deformation behavior of lightweight Fe-35Mn-10Al-1C steel with an elevated concentration of Mn w...
The majority of methods of severe plastic deformation (SPD) used for producing ultra-fine grained (U...
The effects of thermomechanical processing (TMP) on the mechanical response of microalloyed steels s...
In the present paper the basic strengthening mechanisms operating in microstructures are discussed w...
A computational modeling for predicting microstructure evolutions and mechanical properties of steel...