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Low Velocity Impact Behavior of Aluminum Honeycomb Structures
Yu Shi,Yi-Qi Wang,Ali Md. Afsar,Jung-Il Song,Intaek Lee,Yasuo Ochi 대한기계학회 2008 대한기계학회 춘추학술대회 Vol.2008 No.5
Impact behavior of Aluminum Honeycomb Composites (AHC) under the impact loading is checked by using an explicit definition of dynamic ductile failure. Applicable testing followed by drop weight test is also investigated in this study. The specimens with 1/2inches cell size are tested by two impactors with the weight of 5.25Kgf and 11.9Kgf respectively. Dynamic nonlinear transient analysis using finite element method is accomplished for nonlinear contact and elastoplastic behavior described in FE model of AHC. Impact behavior of AHC along with different contact points appeared nearly the same in low impact energy, but it was different in high impact energy. At the centered contact point of honeycomb core cell, resistance peak force shows the highest and at the contact on short-edge of the core cell, its resistance shows the lowest. Comparing fracture mode and time history of resistance force with test, real time deformation from FE results gives the fracture process when the crack initiated and propagated to go further penetration from faced sheet to the honeycomb core.