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We claim that the cellular structure is produced in the CNTs/NR composites.
In one cycle of galloping detonation, a change from multi-headed to single-headed cellular structure is observed.
Statistical analysis on the cellular structure is carried out to observe quantitatively the influences of activation energy and wedge angle.
In this case, the cellular structure is significantly stiffer and its mechanical response is dominated by cell wall stretching.
The results reveal that the cellular structure is of lower in-plane elastic modulus, which shows better in-plane property but weaker out-of-plane load-bearing capability.
The formation of cellular structure is mainly due to the simultaneous diffusion of H2, CO and O2 into Ag bulk and fast reaction at elevated temperatures.
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The uniformity of the cellular structure was analysed by scanning electron microscopy (SEM).
It was observed that the final cellular structure was strongly related to the filler content.
The correlations on the instability wavelength and the size of cellular structure were deduced.
The closed cellular structure was transformed to high-interconnected porous structure, when reducing the foaming temperature.
Materials with a cellular structure are widespread in nature and include wood, cork, plant parenchyma and trabecular bone.
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