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The algorithm is constructed six layers, and first two layers evaluate the suitability of all available locations according to the relative position.
Using a texture analyzer, the layer separation force of the system and adhesion force between the barrier layers were evaluated to understand the correlation between the geometric property and layer separation tendency.
The thickness of prepared layer was studied by NanoCalc 2000 and the structure of prepared layers was evaluated by optical microscopy, AFM and SEM.
The morphologies of the obtained layers were characterized by SEM-FEG while the chemical in depth distribution of the hybrid layers was evaluated by means of Rf-GDOES.
The antibacterial activities of the nitrided layers were evaluated.
The tribological characteristics of carbon and lubricant layers were evaluated using an Atomic Force Microscopy (AFM).
The hardness and composition distribution across the entire layers were evaluated.
Surface nanostructures of the fabricated layers were evaluated by scanning electron microscopy (SEM) and roughness checker.
The force transfer across the layers is evaluated in discrete form using thez-transform technique.
The wear resistances of the layers were evaluated by the micro-abrasive (ball-cratering) wear method.
The adhesive strength of the oxide layers was evaluated by the scratch-test.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com