Abstract The dynamic response and microstructure evolution of oxygen-free high-conductivity copper in a shaped charge liner are investigated through microstructural examination of a soft-recovery EFP. Adiabatic shear bands and voids which is the failure original of copper EFP can be observed in the rear part of the projectile. Numerical simulation results illustrate that the highest plastic strain reaches about 2.9 which can fully accommodate the grains deformation of copper EFP during the formation process at strain rates of the order of 104s−1. Theoretical calculation results indicate that the highest temperature increase of EFP caused by shock wave and plastic deformation can reach 747K, which is 0.55T m (where T m is the melting tempera...
During dynamic tensile extrusion (DTE) the material is subjected to a complex deformation history, i...
Abstract. Many experimental studies have investigated the effect of shock pressure on the post-shock...
This thesis presents a study on the microstructural evolution and mechanical properties of oxygen-fr...
In order to study the dynamic response of tungsten heavy alloy materials under explosive loading, tw...
Abstract--When copper is deformed to high plastic strain (y ~ 34) at high strain rates ( ~ ~ I04 s-...
When copper is deformed to high plastic strain (γ 3 4) at high strain rates (γ 104s-1 a mi...
This paper presents a comprehensive study of a direct impact compression loading on an Electrolytic ...
Issues in simulation modeling, materials and high-energy explosives have been the three areas of res...
Shock-hardened polycrystalline copper was subjected to high strains (γ ∼ 5) at high strain rates (γ'...
Shock consolidation of ultrafine copper powders at room temperature for bulk nano/ultrafine structur...
This investigation is a fundamental study of the microstructural evolution associated with hypervelo...
The effect of grain size and deformation temperature on the shock-hardening response and substructur...
Laser dynamic flexible forming (LDFF) is a novel high velocity forming (HVF) technology, in which th...
At high strain rates, deformation processes are essentially adiabatic and if the plastic work is lar...
Microstructural and crystallographic aspects of high-velocity forming or ``rapid'' forming of rolled...
During dynamic tensile extrusion (DTE) the material is subjected to a complex deformation history, i...
Abstract. Many experimental studies have investigated the effect of shock pressure on the post-shock...
This thesis presents a study on the microstructural evolution and mechanical properties of oxygen-fr...
In order to study the dynamic response of tungsten heavy alloy materials under explosive loading, tw...
Abstract--When copper is deformed to high plastic strain (y ~ 34) at high strain rates ( ~ ~ I04 s-...
When copper is deformed to high plastic strain (γ 3 4) at high strain rates (γ 104s-1 a mi...
This paper presents a comprehensive study of a direct impact compression loading on an Electrolytic ...
Issues in simulation modeling, materials and high-energy explosives have been the three areas of res...
Shock-hardened polycrystalline copper was subjected to high strains (γ ∼ 5) at high strain rates (γ'...
Shock consolidation of ultrafine copper powders at room temperature for bulk nano/ultrafine structur...
This investigation is a fundamental study of the microstructural evolution associated with hypervelo...
The effect of grain size and deformation temperature on the shock-hardening response and substructur...
Laser dynamic flexible forming (LDFF) is a novel high velocity forming (HVF) technology, in which th...
At high strain rates, deformation processes are essentially adiabatic and if the plastic work is lar...
Microstructural and crystallographic aspects of high-velocity forming or ``rapid'' forming of rolled...
During dynamic tensile extrusion (DTE) the material is subjected to a complex deformation history, i...
Abstract. Many experimental studies have investigated the effect of shock pressure on the post-shock...
This thesis presents a study on the microstructural evolution and mechanical properties of oxygen-fr...