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Low-activity aluminide coatings for superalloys using a slurry process free of halide activators and chromates

机译:使用不含卤化物活化剂和铬酸盐的浆液工艺制成的用于铝合金的低活性铝化物涂料

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摘要

Slurry aluminide coatings have been well known for a number of years and are widely used to protect metallic surfaces from oxidation and corrosion. A variety of commercial slurries is available to aluminize the surfaces of nickel-based superalloys, however, they have several disadvantages. They contain environmentally harmful substances such as chromates or halides which are used as binders or to activate the diffusion species. Additionally, up to now slurry coatings were only used to produce precipitate-rich coatings, with a microstructure comparable to high aluminum activity coatings produced by chemical vapor deposition (CVD) like pack cementation.In this work these limitations have been overcome by carefully designing the powder composition of the slurry. Three different nickel-aluminide coatings were developed and applied onto CM-247 nickel-based alloy and Pt-diffused CM-247. By addition of chromium we achieved coatings with a similar microstructure and Al-content (of around 40. at.%), comparable to the state of the art low-activity coatings produced by CVD. Co-deposition of silicon was also achieved in a single step, maintaining the low-activity structure by combining Al-Si powder and chromium. Furthermore, this coating procedure was combined with a platinum electrodeposition step in order to produce single phase Pt-modified low-activity aluminide coatings.
机译:浆状铝化物涂层已为人所知多年,并广泛用于保护金属表面免受氧化和腐蚀。有多种商业浆料可用于对镍基高温合金的表面进行铝化,但是它们也有一些缺点。它们含有对环境有害的物质,例如铬酸盐或卤化物,可用作粘合剂或激活扩散物质。此外,迄今为止,浆液涂料仅用于生产富含沉淀物的涂料,其微观结构可与通过化学气相沉积(CVD)(例如填充胶结)生产的高铝活度涂料相比。浆料的粉末组成。开发了三种不同的铝化镍涂层,并将其应用于CM-247镍基合金和Pt扩散的CM-247。通过添加铬,我们获得了具有与CVD生产的低活性涂层类似的微结构和Al含量(约40 at。%)的涂层。还可以在一个步骤中完成硅的共沉积,并通过结合使用Al-Si粉和铬来保持低活性结构。此外,该涂覆程序与铂电沉积步骤相结合,以生产单相Pt改性的低活性铝化物涂层。

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