A 13 mm split Hopkinson pressure bar (SHPB) apparatus was used to extract the high strain rate behaviour of aluminium alloy 6060 T5. Striker velocities applied were up to 27.56 mls. The signals from the two sets of strain gauges were used to analyse the dynamic behaviour of specimens. In this study, the experiment was simulated using an axisymmetric model in LS-DYNA. The simplified Johnson-Cook constitutive model was employed to represent the stress-strain relation of the specimen. A 2D automatic surface-to-surface contact with a friction coefficient of 0.06 was applied at all the contact surfaces. The numerical simulation fits well with the experimental results
A specially-designed specimen is proposed to investigate the tensile response of metals at high stra...
Low density and excellent machinability of Mg alloys make them good candidates for light-weight cons...
Split Hopkinson Pressure Bar (SHPB) has become a frequently used technique for measuring uniaxial co...
A 13 mm split Hopkinson pressure bar (SHPB)apparatus was used to extract the high strain rate behavi...
Split Hopkinson Pressure Bar (SHPB) has become a frequently used technique for measuring compressive...
This article describes the Split Hopkinson Pressure Bar test of aluminium alloy EN AW 7075-T6. This ...
A specially-designed specimen is proposed to investigate the tensile response of metals at high stra...
Static mechanical properties such as yield strength and hardness are readily available from many dif...
In this era, static mechanical properties such as hardness and strength can usually be found easily ...
There are three types of Split Hopkinson Pressure Bar (SHPB) apparatus available in the strength of ...
The Split Hopkinson Pressure Bar (SHPB), or Kolsky Bar, is widely used for studying the dynamic mech...
Split Hopkinson Pressure Bar (SHPB) has become a frequently used technique for measuring an uniaxial...
Results of experimental investigation and numerical modeling of high strain rate behavior of alumini...
Static mechanical properties such as strength and hardness are easily available in a variety of sour...
There is strong demand for materials such as aluminum alloys and magnesium alloys which have great m...
A specially-designed specimen is proposed to investigate the tensile response of metals at high stra...
Low density and excellent machinability of Mg alloys make them good candidates for light-weight cons...
Split Hopkinson Pressure Bar (SHPB) has become a frequently used technique for measuring uniaxial co...
A 13 mm split Hopkinson pressure bar (SHPB)apparatus was used to extract the high strain rate behavi...
Split Hopkinson Pressure Bar (SHPB) has become a frequently used technique for measuring compressive...
This article describes the Split Hopkinson Pressure Bar test of aluminium alloy EN AW 7075-T6. This ...
A specially-designed specimen is proposed to investigate the tensile response of metals at high stra...
Static mechanical properties such as yield strength and hardness are readily available from many dif...
In this era, static mechanical properties such as hardness and strength can usually be found easily ...
There are three types of Split Hopkinson Pressure Bar (SHPB) apparatus available in the strength of ...
The Split Hopkinson Pressure Bar (SHPB), or Kolsky Bar, is widely used for studying the dynamic mech...
Split Hopkinson Pressure Bar (SHPB) has become a frequently used technique for measuring an uniaxial...
Results of experimental investigation and numerical modeling of high strain rate behavior of alumini...
Static mechanical properties such as strength and hardness are easily available in a variety of sour...
There is strong demand for materials such as aluminum alloys and magnesium alloys which have great m...
A specially-designed specimen is proposed to investigate the tensile response of metals at high stra...
Low density and excellent machinability of Mg alloys make them good candidates for light-weight cons...
Split Hopkinson Pressure Bar (SHPB) has become a frequently used technique for measuring uniaxial co...