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The results in this paper deepen the knowledge of the MCrAlY coating design for superalloy-coating systems in high-temperature applications.
In order to take into account the index gradient character of the films in the coating design of broadband antireflection coatings, the index function is discretized in a finite number of homogeneous layers.
This provides valuable information for the coating design and for the use of coatings in different applications.
The dependence of the laser conditioning on the coating design was also observed and the over-coated sample obtained greatest enhancement, whereas the absorbance of the samples did not change obviously.
The results show that such closed-form analytical modelling is a quick and versatile tool for industrially-relevant hard-coating systems, and could be utilized during the coating design process for parameter and material justification or combined with micro-mechanical testing, including high-temperature testing, to predict thin-film and coating failure in harsh industrial environments.
This review also includes a discussion of the industrial applications of these coatings as well as of potential improvements to the coating design and other anticipated future developments.
This facile air-based sputtering technique with such a gradient coating design has great potential for solar selective absorber coatings applications.
Two coating design concepts, flame spraying and printing PEEK (poly-ether-ether-ketone -based coatings on Al substrate, were introduced in this poly-ether-ether-ketone -based
In this work, we have studied the influence of the coating design and composition on the oxidation behavior of AlxCr1−xN (x = 0.70) coatings.
This paper aims to establish a relationship between the surface morphology induced micromechanics and bone remodeling responses to a solid bead coated porous implant and further to develop a multiobjective optimization framework for the coating design of biomaterials.
The implications for optimal coating design are also discussed.
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