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HRTEM experiments are in progress to understand the optical behavior of these multilayers.
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The evolution of coating microstructures at various stages of cyclic life was studied, and phase equilibria issues relevant to the fabrication and oxidation behavior of these multilayer systems are discussed.
Therefore, the next step has been the evaluation of the tribological behavior of these CrN/Cr multilayers, which is reported in this paper.
The mechanical behavior of the multilayers is discussed with an interlayer model.
The micro-friction and macro-tribological behavior of the multilayers were investigated.
We have investigated the mechanical behavior of the multilayers and its dependence on h.
The tensile stress strain behavior of the multilayers obeys a simple additive mixture law of the one of the components which is consistent with the parallel mechanical coupling of the layer structure of the films.
The complex magnetic behavior of these both multilayer coupled magnetic materials as a function of temperature and applied magnetic field is also discussed.
The electrochemical behavior of the multilayer films was described.
The electrochemistry behavior of the multilayer thin films was studied in detail on ITO.
In order to evaluate the electrochemical behavior of the multilayer structure, the investigation of the multilayer coatings was carried out via cyclic potentiodynamic polarization, in a sulfuric acid media which contained chloride ions.
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behavior of these elements
behavior of these mutants
behavior of these mixtures
behavior of these strains
behavior of these species
behavior of these solutions
behavior of these alloys
behavior of these samples
behavior of these coatings
behavior of these cells
behavior of these mice
behavior of these lesions
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