Hat-shaped specimen geometries were developed to generate high strain, high-strain-rates deformation under prescribed conditions. These geometries offer also the possibility to investigate the occurrence of ductile rupture under low or negative stress triaxiality, where most failure models fail. In this work, three tophat geometries were designed, by means of extensive numerical simulation, to obtain desired stress triaxiality values within the shear region that develops across the ligament. Material failure was simulated using the Continuum Damage Model (CDM) formulation with a unilateral condition for damage accumulation and validated by comparing with quasi-static and high strain rate compression tests results on OFHC copper. Preliminary...
Molecular dynamics (MD) simulations are used to model the compression under uniaxial strain of coppe...
One of the most important limit states in structural metals is ductile fracture, and the prediction ...
A stocky tubular tension-torsion specimen geometry was optimized to characterize the effect of the s...
Hat-shaped specimen geometries were developed to generate high strain, high-strain-rates deformation...
A new specimen geometry, the shear compression specimen (SCS), has been developed and validated for ...
ABSTRACT: In this contribution, the effect of the stress state (by mean of the triaxiality ratio) on...
Numerical simulations of the dynamic deformation and ductile fracture of notched tensile specimens h...
This paper presents the results of an experimental study of ductile damage and failure of pure coppe...
AbstractDuctile failure in polycrystalline oxygen-free, high-conductivity copper is explored through...
Materials performance is recognized as being central to many emergent technologies. Future technolog...
Materials performance is recognized as being central to many emergent technologies. Future technolog...
In this paper, we present the dynamic response of commercially pure copper subjected to combined ten...
It is well established that spall fracture and other rapid failures in ductile materials are often d...
The analysis of the stress-strain state and strain induced damage of a cylindrical shell made of cop...
One of the most important limit states in structural metals is ductile fracture, and the prediction ...
Molecular dynamics (MD) simulations are used to model the compression under uniaxial strain of coppe...
One of the most important limit states in structural metals is ductile fracture, and the prediction ...
A stocky tubular tension-torsion specimen geometry was optimized to characterize the effect of the s...
Hat-shaped specimen geometries were developed to generate high strain, high-strain-rates deformation...
A new specimen geometry, the shear compression specimen (SCS), has been developed and validated for ...
ABSTRACT: In this contribution, the effect of the stress state (by mean of the triaxiality ratio) on...
Numerical simulations of the dynamic deformation and ductile fracture of notched tensile specimens h...
This paper presents the results of an experimental study of ductile damage and failure of pure coppe...
AbstractDuctile failure in polycrystalline oxygen-free, high-conductivity copper is explored through...
Materials performance is recognized as being central to many emergent technologies. Future technolog...
Materials performance is recognized as being central to many emergent technologies. Future technolog...
In this paper, we present the dynamic response of commercially pure copper subjected to combined ten...
It is well established that spall fracture and other rapid failures in ductile materials are often d...
The analysis of the stress-strain state and strain induced damage of a cylindrical shell made of cop...
One of the most important limit states in structural metals is ductile fracture, and the prediction ...
Molecular dynamics (MD) simulations are used to model the compression under uniaxial strain of coppe...
One of the most important limit states in structural metals is ductile fracture, and the prediction ...
A stocky tubular tension-torsion specimen geometry was optimized to characterize the effect of the s...