International audienceDynamic loadings produce high stress waves leading to the spallation of ductile materials such as aluminum, copper, magnesium or tantalum. The main mechanism used herein to explain the change of the number of cavities with the stress rate is nucleation inhibition, induced by the growth of already nucleated cavities. The dependence of the spall strength and critical time with the loading rate is investigated in the framework of a probabilistic model. The present approach, which explains previous experimental findings on the strain-rate dependence of the spall strength, is applied to analyze experimental data on tantalum
WOSInternational audienceA model of dynamic damage by void nucleation and growth is proposed for ela...
WOSInternational audienceA model of dynamic damage by void nucleation and growth is proposed for ela...
WOSInternational audienceA model of dynamic damage by void nucleation and growth is proposed for ela...
International audienceDynamic loadings produce high stress waves leading to the spallation of ductil...
Dynamic spall failure of ductile metals is a complex multiscale, multirate process. On the macroscal...
The present work deals with the description of ductile fracture during dynamic pressure loading. The...
The present work deals with the description of ductile fracture during dynamic pressure loading. The...
We present quantification of micromechanical features such as voids that comprise the ductile fractu...
We present quantification of micromechanical features such as voids that comprise the ductile fractu...
It is well established that spall fracture and other rapid failures in ductile materials are often d...
AbstractThe micromechanisms related to ductile failure during dynamic loading of single crystal Cu a...
WOSInternational audienceThis paper proposes a detailed theoretical analysis of the development of d...
WOSInternational audienceThis paper proposes a detailed theoretical analysis of the development of d...
The authors present quantification of micromechanical features such as voids that comprise the ducti...
From many years, a very special attention is paid to dynamic fracture in the industrial (forming pro...
WOSInternational audienceA model of dynamic damage by void nucleation and growth is proposed for ela...
WOSInternational audienceA model of dynamic damage by void nucleation and growth is proposed for ela...
WOSInternational audienceA model of dynamic damage by void nucleation and growth is proposed for ela...
International audienceDynamic loadings produce high stress waves leading to the spallation of ductil...
Dynamic spall failure of ductile metals is a complex multiscale, multirate process. On the macroscal...
The present work deals with the description of ductile fracture during dynamic pressure loading. The...
The present work deals with the description of ductile fracture during dynamic pressure loading. The...
We present quantification of micromechanical features such as voids that comprise the ductile fractu...
We present quantification of micromechanical features such as voids that comprise the ductile fractu...
It is well established that spall fracture and other rapid failures in ductile materials are often d...
AbstractThe micromechanisms related to ductile failure during dynamic loading of single crystal Cu a...
WOSInternational audienceThis paper proposes a detailed theoretical analysis of the development of d...
WOSInternational audienceThis paper proposes a detailed theoretical analysis of the development of d...
The authors present quantification of micromechanical features such as voids that comprise the ducti...
From many years, a very special attention is paid to dynamic fracture in the industrial (forming pro...
WOSInternational audienceA model of dynamic damage by void nucleation and growth is proposed for ela...
WOSInternational audienceA model of dynamic damage by void nucleation and growth is proposed for ela...
WOSInternational audienceA model of dynamic damage by void nucleation and growth is proposed for ela...