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ALLOY 1430 Driver
Other details of the low sulfur nickel base substrate alloy and coating system of the present disclosure are set forth in the following detailed description ALLOY 1430 the accompanying drawings.
One theory is that sulfur migrates to the interface between the alumina and the alloy and weakens the bonding causing early spallation of the protective alumina. Nickel base ALLOY 1430 here implies ALLOY 1430 structural superalloys and nickel base coatings with higher concentration of Al and distinctly different compositions and phases.
A synergistic and surprisingly unpredictable effect is achieved when the substrate alloy of an article such as a turbine engine component, i. It has been surprisingly found that the oxidation resistance of the overlay coated superalloy is significantly influenced by the sulfur content of the substrate alloy, even though the overlay coating itself may contain a large ALLOY 1430 of active element Y, which heretofore was believed to effectively tie up all the S present in the coating or coming from the substrate.
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To better appreciate the preceding paragraph, it is necessary to understand the role of coatings. In spite of the presence ALLOY 1430 aluminum in the load bearing superalloy material described above, the oxidation ALLOY 1430 of the structural material is not sufficient for hollow components to survive the economically viable time duration required in operation.
This deficiency of the primary load bearing structural alloy is overcome by coating the material with another nickel base alloy coating containing higher ALLOY 1430 of Al, providing oxidation resistance for significantly longer duration. There are two major classes of coatings.
In one class of coatings, generally referred to as diffusion coatings, the base alloy surface is enriched with Al to improve its oxidation resistance. Such coatings consume part of the base ALLOY 1430 and become an integral part of the surface of the original material through inter-diffusion.
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Such coatings are typically applied ALLOY 1430 controlled chemical reaction liberating Al in the vicinity of the surface of the base alloy. Performance of such coatings may be improved by incorporating precious elements such as Pt into the coating by interdiffusion.
Currently, diffusion coatings are broadly categorized into two groups. Since these coatings become an ALLOY 1430 part of the base alloys, it is easy to understand that the presence of sulfur in the base alloy as well as that brought by the coating process will influence the oxidation performance of the coated system. In the diffusion coatings, there is no known simple way to incorporate active elements to tie up free sulfur to improve oxidation performance.
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LEED results are thus in full agreement and in- Work along these lines is presently underway and dependently support the STM work of Murray will be reported in a future and more compre- and co-workers that surface alloying occurs with hensive article. Pd atoms occupying fourfold ALLOY 1430 sites within Most common metal adsorbates such as transi- the outer monolayer at low coverages.
However, it is important to note collected for coverages as low as 0. The use of liquid Pd neighbours.
Thus the best an studied. Bradshaw, Rep. Conclusions Pendry, D. Saldin, Surf.
Heinz, D. Saldin, J. Pendry, Phys.
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Heinz, Vacuum 41 and references therein. Starke, K.