Title of article :
Dynamic ductile fracture in aluminum round bars: experiments and simulations
Author/Authors :
Majid Anvari · Jun Liu · Christian Thaulow، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2007
Pages :
16
From page :
317
To page :
332
Abstract :
The application of rate-dependent cohesive elements is validated in simulation of ductile fracture in aluminum round bars under dynamic loading conditions. Smooth and notched round bars made of AA6060-T6 are tested and simulated under quasi-static and dynamic loadings. The smooth round bar is modeled using finite elements that obey Gurson-Tvergaard-Needleman (GTN) formulation as the constitutive equation. Comparing with experimental results, correspondingGTN parameters and rate-dependent plasticity of the alloy are obtained. A single strain ratedependentGTNelement with the obtained parameters is examined under different values of stress triaxiality and loading rates. The resulting stresselongation curves represent the traction separation law (TSL) for cohesive elements and the variations of the maximum traction and the energy absorbed are investigated. The notched round bars are modeled by axisymmetric continuum and cohesive elements. The undamaged bulk material is elastic-visco plastic and the cohesive elements obey the TSL defined from the single element calculations. Theexperiments are simulated by these models in which the cohesive elements are rate sensitive and automatically obtain the values of the total strain rate from their adjacent continuum elements to update the values of the cohesive strength during the analysis. The results of the analysis, including maximum load, time of failure and diameter reduction are validated with the experimental results. The effects of element size, rate-dependent plasticity of the material and stress triaxiality are also discussed.
Keywords :
Cohesive zone modeling · Ratesensitivity · Round bars · Dynamic loading ·Gurson model
Journal title :
International Journal of Fracture
Serial Year :
2007
Journal title :
International Journal of Fracture
Record number :
828498
Link To Document :
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