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Mechanical Properties of Advanced Multifunctional Coatings

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ceramic matrix composite; high temperature strength; SiC fiber; fiber–matrix interface coatings; residual stress; diamond-like carbon (DLC); plasma emission intensity; magnetron sputtering; tribological performance; hot casting metals; explosive compression bonding; dovetail groove; metallographic analysis; mechanics analysis; complex network theory; sandstone; network topology; seepage; distribution of degree; structure of engineering coatings; pore network model; geometric distribution; micropitting; gear surface fatigue; dedendum; addendum; SiO2 thin film; nanoindentation; surface morphology; load-penetration curve; hardness; lubrication; nanotribology; phase transition; adsorption; Monte Carlo simulation; molecular dynamics; thermal barrier coatings; thermal oxidation stress; Cr3+ photoluminescence piezospectroscopy; data processing method; fitting function; Lorentzian functions; spectromechanics; anti-reflection; optical; interference; scratch; damage; CFD simulation; ultraviolet nanoimprint lithography; filling behavior; moth-eye nanostructure; thermal barrier coating; terahertz time-domain spectroscopy (THz-TDS); stress optic coefficient; barycenter method; nanolaminates; atomic layer deposition; nanoengineering; n/a

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libros

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Suiza