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A possible mechanism for the formation of wrinkles was proposed.
This leads to the formation of wrinkles in graphene.
It also could shed light on the formation of wrinkles or skin cracks in adulthood.
The accumulation of such damage contributes to skin aging, especially the formation of wrinkles.
Usually on the C face, the elastic energy associated with the stress is often relaxed by the formation of wrinkles.
The interaction between the substrate and graphene or between adsorbed nanoparticles and GO may govern the formation of wrinkles [14, 15] in the flexible nano-sheets.
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In order to eliminate the wrinkles, the effects of the process parameters such as blank-holder force, blank size and draw-bead locations on the formation of wrinkling were studied and possible solutions were tried.
The formation of wrinkle patterns is systematically investigated as functions of the thickness of original ultrathin film, the time of HHIC treatment, the annealing temperature and the chemical structure of polymers.
When tension persists for longer periods of time, the ILM may degenerate and cellular proliferation causes the formation of wrinkling.
The increase in papillary dermal birefringence with RSTLs formation may show resistance to the formation of wrinkle lines under normal conditions in the case of forehead skin.
The formation mechanisms of wrinkles in single layer graphene sheets and graphene oxide (GO) papers, as well as their effects on the corresponding Young's moduli have been studied based on the molecular dynamics simulations.
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