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In this study, the mechanical properties of face sheets and foam cores in the combined hygrothermal conditions were investigated.
Grain boundary engineering (GBE) aims at optimizing the properties of face centred cubic materials with low stacking fault energy by creating a high content of special twin boundaries.
The influence of the Mn content on the elastic properties of face centered cubic Fe Mn alloys was studied using the combinatorial approach.
The effects of various properties, such as orthotropic properties of face layers, and the viscoelastic core layer stiffness and thickness are discussed.
The core of sandwich plate is assumed isotropic and material properties of face layers are assumed graded through thickness direction by the power law.
However, the mechanical properties of face sheets and foam cores, and the interfacial bond strength of sandwich structures are affected by the combined hygrothermal conditions, which is common in the most civil engineering applications.
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Molecular dynamics simulation is used to study the tensile mechanical properties of face-centred cubic Ni nanocrystalline materials with mean grain size of 12 nm.
We have studied the influence of Al and Si additions on the elastic properties of face-centered cubic (fcc) Fe Mn random alloys with Fe/Mn ratios of 4.00 and 2.33 using ab initio calculations.
Using their techniques, neurophysiologists began discovering neurons throughout visual cortex responsive to increasingly abstract features of visual stimuli: from edges to motion direction to colors to properties of faces and hands.
Face aftereffects are proving to be an effective means of examining the properties of face-specific processes in the human visual system.
Such data also suggests that the signalling properties of faces are universal across human populations and are potentially phylogenetically old in primates.
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