TY - JOUR
T1 - Dynamic behavior of staggered triangular honeycomb cores under in-plane crushing loadings
AU - Sun, Deqiang
AU - Zhang, Weihong
AU - Yu, Jiang
PY - 2012
Y1 - 2012
N2 - A reliable finite element model was employed to investigate the effects of configuration parameters and impact velocity on the in-plane deformation mode and dynamic plateau stress of staggered triangular honeycomb cores at impact velocities 3-300 m s-1 under in-plane crushing loadings. At different impact velocities, '>'-, '<'-shaped, and 'I'-shaped deformation modes appear in turn. The effects of configuration parameters on the deformation modes are discussed qualitatively. When all configuration parameters are kept constant, the mean in-plane dynamic plateau stress is proportional to the square of impact velocity; for a given impact velocity, the mean in-plane dynamic plateau stress is related to the ratio of cell-wall thickness to edge length by power laws and to the expanding angle by complicated curves. Mean in-plane dynamic plateau stresses are expressed by empirical equations in terms of configuration parameters and impact velocity based on our simulation results.
AB - A reliable finite element model was employed to investigate the effects of configuration parameters and impact velocity on the in-plane deformation mode and dynamic plateau stress of staggered triangular honeycomb cores at impact velocities 3-300 m s-1 under in-plane crushing loadings. At different impact velocities, '>'-, '<'-shaped, and 'I'-shaped deformation modes appear in turn. The effects of configuration parameters on the deformation modes are discussed qualitatively. When all configuration parameters are kept constant, the mean in-plane dynamic plateau stress is proportional to the square of impact velocity; for a given impact velocity, the mean in-plane dynamic plateau stress is related to the ratio of cell-wall thickness to edge length by power laws and to the expanding angle by complicated curves. Mean in-plane dynamic plateau stresses are expressed by empirical equations in terms of configuration parameters and impact velocity based on our simulation results.
KW - Finite element analysis
KW - Inplane deformation mode
KW - Mean in-plane dynamic plateau stress
KW - Staggered triangular honeycomb cores
UR - http://www.scopus.com/inward/record.url?scp=84870173707&partnerID=8YFLogxK
U2 - 10.3139/146.110767
DO - 10.3139/146.110767
M3 - 文章
AN - SCOPUS:84870173707
SN - 1862-5282
VL - 103
SP - 1376
EP - 1389
JO - International Journal of Materials Research
JF - International Journal of Materials Research
IS - 11
ER -