In this study, a numerical model is developed especially for tracking the propagation of the impact-induced delamination under subsequent flexural loading. The progressive damage modeling technique is used to simulate the quasi-static three-point bending test. The numerical model is validated with experimental bending tests on impacted carbon/epoxy specimens. The specimens contain embedded delamination caused by low velocity impact prior to applying the flexural load. The impact-induced delaminated zone and the delamination propagation during the bending test are assessed using ultrasonic inspection. The force-displacement response and the delamination propagation obtained from the model and the experiments are compared for validation, with satisfactory results. (c) 2012 Elsevier Ltd. All rights reserved.
机构:
Lab Technol Innovat Struct & Mat LITEM, Barcelona 08222, Spain
Univ Ramon Llull, Inst Quim Sarria, Barcelona 08017, SpainLab Technol Innovat Struct & Mat LITEM, Barcelona 08222, Spain
Perez, Marco A.
Oiler, Sergio
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Int Ctr Numer Methods Engn CIMNE, Barcelona 08034, Spain
Univ Politecn Cataluna, BarcelonaTech, Dept Resistencia Mat & Estruct Engn, E-08028 Barcelona, SpainLab Technol Innovat Struct & Mat LITEM, Barcelona 08222, Spain
Oiler, Sergio
Felippa, Carlos A.
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Univ Colorado, Dept Aerosp Engn Sci, Boulder, CO 80309 USA
Univ Colorado, Ctr Aerosp Struct, Boulder, CO 80309 USALab Technol Innovat Struct & Mat LITEM, Barcelona 08222, Spain
Felippa, Carlos A.
Gil, Lluis
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Lab Technol Innovat Struct & Mat LITEM, Barcelona 08222, Spain
Univ Politecn Cataluna, BarcelonaTech, Dept Resistencia Mat & Estruct Engn, E-08028 Barcelona, SpainLab Technol Innovat Struct & Mat LITEM, Barcelona 08222, Spain