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The excellent energy absorption behaviour of the sandwich panel with STF filled truss core is interpreted by the transformation of deformation modes of core beams from non-symmetry to symmetry after filled with the STF through strong interaction between the buckling behaviour of pyramidal lattice truss core and the shear thickening behaviour of the filled STF material.
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The primary failure modes of cores transfer from core crushing and inelastic deformation to cracks and fragmentation with the increasing applied impulse and core density.
The crystal structure of APLF FHA and triphosphorylated XRCC4 peptide reveals a conserved mode of core pSpT motif binding.
This results in minimal interaction between the modes of each core in the transmission bands of the fibre and hence minimal coupling between the cores.
The test results show that two types of local buckling modes of the core were observed, while no local failure of the casing induced by local buckling was found.
Finally, a finite element analysis was undertaken to predict the crushing behaviour, energy absorbing characteristics and the failure modes of these core materials in reasonably good correlation with the corresponding test results.
This region can be modeled as a long, dielectric cylinder, for which Maxwell's equations can be solved analytically to determine the electromagnetic modes of the core (cladding) in terms of Bessel (modified Bessel) functions of the first (second) kind, as described in [48].
These data provide a potential structural explanation for the three-channel folding mechanism of TR: random association of two different monomeric forms, which are distinguished by alternative packing modes of the core dimerization domain and the DNA-binding, helix-turn-helix, domain.
Flexural fatigue and static failure modes of Eco-Core sandwich beams were similar.
From Figure 3, it can be known that except for this plasmon mode of approximately 1050 nm, other plasmon modes consist of the essential plasmon modes of the core-shell nanocylinder pair.
Flexural fatigue failure modes of Eco-Core sandwich beam were classified: damage onset (single tension crack), damage progression (multiple tension cracks) and ultimate failure (a combination of tension and shear).
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