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Pregled bibliografske jedinice broj: 1108754

Numerical Methodology for Aerostructures Hail Impact Damage Prediction


Ivančević, Darko; Badurina Žakan, Ivan; Smojver, Ivica
Numerical Methodology for Aerostructures Hail Impact Damage Prediction // IOP conference series. Materials science and engineering, 1024 (2021), 1-8 doi:10.1088/1757-899X/1024/1/012082 (međunarodna recenzija, članak, znanstveni)


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Naslov
Numerical Methodology for Aerostructures Hail Impact Damage Prediction

Autori
Ivančević, Darko ; Badurina Žakan, Ivan ; Smojver, Ivica

Izvornik
IOP conference series. Materials science and engineering (1757-8981) 1024 (2021); 1-8

Vrsta, podvrsta i kategorija rada
Radovi u časopisima, članak, znanstveni

Ključne riječi
impact damage, high-velocity impact, hail impact, Smoothed Particle Hydrodynamics, Coupled Eulerian Lagrangian method

Sažetak
The two numerical approaches for modelling of soft-body impact in Abaqus/Explicit have been applied in this work for prediction of high-velocity hail impact damage in aeronautical structures. The applied methods are the CEL (Coupled Eulerian Lagrangian) and SPH (Smoothed Particle Hydrodynamics), while the impacted structure is a metallic slat structure. Comparison of the CEL and SPH methods has been performed by impact simulations at a rigid plate, aimed to validate the applied material model, and by simulation of the slat structure impact. Two material models have been applied to study the effect of high strain-rates at the damage process in the metallic structure. The first is the standard isotropic plasticity model that defines material failure based on the value of equivalent plastic strain. The second constitutive model in the analyses is the Johnson- Cook model that includes the effects of strain rate and temperature on the material failure process. The simulations have been stable, illustrating the robustness of Abaqus/Explicit in these highly nonlinear impact cases. Compared to the CEL, the SPH method is computationally more efficient.

Izvorni jezik
Engleski

Znanstvena područja
Strojarstvo, Zrakoplovstvo, raketna i svemirska tehnika



POVEZANOST RADA


Ustanove:
Fakultet strojarstva i brodogradnje, Zagreb

Profili:

Avatar Url Darko Ivančević (autor)

Avatar Url Ivica Smojver (autor)

Poveznice na cjeloviti tekst rada:

doi iopscience.iop.org

Citiraj ovu publikaciju:

Ivančević, Darko; Badurina Žakan, Ivan; Smojver, Ivica
Numerical Methodology for Aerostructures Hail Impact Damage Prediction // IOP conference series. Materials science and engineering, 1024 (2021), 1-8 doi:10.1088/1757-899X/1024/1/012082 (međunarodna recenzija, članak, znanstveni)
Ivančević, D., Badurina Žakan, I. & Smojver, I. (2021) Numerical Methodology for Aerostructures Hail Impact Damage Prediction. IOP conference series. Materials science and engineering, 1024, 1-8 doi:10.1088/1757-899X/1024/1/012082.
@article{article, author = {Ivan\v{c}evi\'{c}, Darko and Badurina \v{Z}akan, Ivan and Smojver, Ivica}, year = {2021}, pages = {1-8}, DOI = {10.1088/1757-899X/1024/1/012082}, keywords = {impact damage, high-velocity impact, hail impact, Smoothed Particle Hydrodynamics, Coupled Eulerian Lagrangian method}, journal = {IOP conference series. Materials science and engineering}, doi = {10.1088/1757-899X/1024/1/012082}, volume = {1024}, issn = {1757-8981}, title = {Numerical Methodology for Aerostructures Hail Impact Damage Prediction}, keyword = {impact damage, high-velocity impact, hail impact, Smoothed Particle Hydrodynamics, Coupled Eulerian Lagrangian method} }
@article{article, author = {Ivan\v{c}evi\'{c}, Darko and Badurina \v{Z}akan, Ivan and Smojver, Ivica}, year = {2021}, pages = {1-8}, DOI = {10.1088/1757-899X/1024/1/012082}, keywords = {impact damage, high-velocity impact, hail impact, Smoothed Particle Hydrodynamics, Coupled Eulerian Lagrangian method}, journal = {IOP conference series. Materials science and engineering}, doi = {10.1088/1757-899X/1024/1/012082}, volume = {1024}, issn = {1757-8981}, title = {Numerical Methodology for Aerostructures Hail Impact Damage Prediction}, keyword = {impact damage, high-velocity impact, hail impact, Smoothed Particle Hydrodynamics, Coupled Eulerian Lagrangian method} }

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