Title of article :
Mechanical response of metallic honeycomb sandwich panel structures to high-intensity dynamic loading
Author/Authors :
Kumar P. Dharmasena، نويسنده , , Haydn N.G. Wadley، نويسنده , , Zhenyu Xue، نويسنده , , John W. Hutchinson، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2008
Pages :
12
From page :
1063
To page :
1074
Abstract :
Explosive tests were performed in air to study the dynamic mechanical response of square honeycomb core sandwich panels made from a super-austenitic stainless steel alloy. Tests were conducted at three levels of impulse load on the sandwich panels and solid plates with the same areal density. Impulse was varied by changing the charge weight of the explosive at a constant standoff distance. At the lowest intensity load, significant front face bending and progressive cell wall buckling were observed at the center of the panel closest to the explosion source. Cell wall buckling and core densification increased as the impulse increased. An air blast simulation code was used to determine the blast loads at the front surfaces of the test panels, and these were used as inputs to finite element calculations of the dynamic response of the sandwich structure. Very good agreement was observed between the finite element model predictions of the sandwich panel front and back face displacements and the experimental observations. The model also captured many of the phenomenological details of the core deformation behavior. The honeycomb sandwich panels suffered significantly smaller back face deflections than solid plates of identical mass even though their design was far from optimal for such an application.
Keywords :
Blast loading , Finite element simulation , Impulse loads , Sandwich panels , Air blast testing
Journal title :
International Journal of Impact Engineering
Serial Year :
2008
Journal title :
International Journal of Impact Engineering
Record number :
1251423
Link To Document :
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