When designing ballistic shields, it is of significance to know how materials behave at high strain rates. The paper presents results of the experimental investigation into the influence of the strain rate on the dynamic yield point of 40HM chromium-molybdenum steel. The behaviour of a material differs depending on impact speed, even if the impact energy remains the same. Dynamic tests were conducted on two specimens using two testing stations: a station equipped with a rotary hammer for testing at a speed reaching 40 m/s and a station accelerating the specimen to a high speed (160 to 270 m/s) and launching it to impact a hard, non-deformable shield. The dynamic yield point was determined by using the Taylor theory. To determine the impact ...
The principal aim of the research is to determine the stress/strain characteristics of stainless ste...
During the last several decades, considerable efforts have been devoted to high-speed impact tests t...
In the paper, results of impact bending tests of a high-manganese steel of Fe – 30 wt.%, Mn – 9 wt.%...
When designing ballistic shields, it is of significance to know how materials behave at high strain ...
Dynamic behavior of materials have some influence on ballistic performance. To understand the ballis...
for strain rates s- ' < &/dt < lo6 s- '. The planar plate impact technique in co...
Dynamic yield strength of mild steel is estimated when impacted by the steel balls launchedby two st...
Post impact strain measurements of damaged plates were carried out experimentally after launching a ...
Some industrial applications require properties of materials to be determined to evaluate components...
This paper presents the methods of testing the materials subjected to static and dynamic tensile tes...
Determination of stress-strain properties of materials and formulation of suitable constitutive laws...
Tensile and compressive tests were carried out on a selection of metals of interest in engineering ...
Reliable dynamic mechanical properties of high nitrogen steels are necessary for the design and asse...
Post impact strain measurements of damaged plates were carried out experimentally after launching a ...
High strain rate-dependent deformation behaviors are important in design and optimization of armor s...
The principal aim of the research is to determine the stress/strain characteristics of stainless ste...
During the last several decades, considerable efforts have been devoted to high-speed impact tests t...
In the paper, results of impact bending tests of a high-manganese steel of Fe – 30 wt.%, Mn – 9 wt.%...
When designing ballistic shields, it is of significance to know how materials behave at high strain ...
Dynamic behavior of materials have some influence on ballistic performance. To understand the ballis...
for strain rates s- ' < &/dt < lo6 s- '. The planar plate impact technique in co...
Dynamic yield strength of mild steel is estimated when impacted by the steel balls launchedby two st...
Post impact strain measurements of damaged plates were carried out experimentally after launching a ...
Some industrial applications require properties of materials to be determined to evaluate components...
This paper presents the methods of testing the materials subjected to static and dynamic tensile tes...
Determination of stress-strain properties of materials and formulation of suitable constitutive laws...
Tensile and compressive tests were carried out on a selection of metals of interest in engineering ...
Reliable dynamic mechanical properties of high nitrogen steels are necessary for the design and asse...
Post impact strain measurements of damaged plates were carried out experimentally after launching a ...
High strain rate-dependent deformation behaviors are important in design and optimization of armor s...
The principal aim of the research is to determine the stress/strain characteristics of stainless ste...
During the last several decades, considerable efforts have been devoted to high-speed impact tests t...
In the paper, results of impact bending tests of a high-manganese steel of Fe – 30 wt.%, Mn – 9 wt.%...