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On Residual Compressive Strength Prediction of Composite Sandwich Panels after Low-Velocity Impact Damage
Abstract This paper introduces a Nonlinear Finite Element Analysis on damage propagation behavior of composite panels under in-plane uniaxial quasi-static compression after a low-velocity impact. The major damage modes due to the impact were incorporated into the model. A consequential core crushing mechanism was incorporated into the analysis. The critical far field stress corresponding to the onset of damage propagation near the damage zone was captured successfully with a good correlation with experimental data. These values can be used to predict the residual compressive strength of low-velocity impacted composite sandwich panels.
On Residual Compressive Strength Prediction of Composite Sandwich Panels after Low-Velocity Impact Damage
Abstract This paper introduces a Nonlinear Finite Element Analysis on damage propagation behavior of composite panels under in-plane uniaxial quasi-static compression after a low-velocity impact. The major damage modes due to the impact were incorporated into the model. A consequential core crushing mechanism was incorporated into the analysis. The critical far field stress corresponding to the onset of damage propagation near the damage zone was captured successfully with a good correlation with experimental data. These values can be used to predict the residual compressive strength of low-velocity impacted composite sandwich panels.
On Residual Compressive Strength Prediction of Composite Sandwich Panels after Low-Velocity Impact Damage
Xie, Zonghong (Autor:in) / Vizzini, Anthony J. (Autor:in) / Yang, Mao (Autor:in)
01.01.2005
10 pages
Aufsatz/Kapitel (Buch)
Elektronische Ressource
Englisch
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