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The erosion performance of cold spray deposited metal matrix composite coatings with subsequent friction stir processing

机译:冷喷涂沉积的金属基复合材料涂层在随后的搅拌摩擦处理中的腐蚀性能

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This study forms an initial investigation into the development of SprayStir, an innovative processing technique for generating erosion resistant surface layers on a chosen substrate material. Tungsten carbide - cobalt chromium, chromium carbide - nickel chromium and aluminium oxide coatings were successfully cold spray deposited on AA5083 grade aluminium. In order to improve the deposition efficiency of the cold spray process, coatings were co-deposited with powdered AA5083 using a twin powder feed system that resulted in thick (>300 mu m) composite coatings. The deposited coatings were subsequently friction stir processed to embed the particles in the substrate in order to generate a metal matrix composite (MMC) surface layer. The primary aim of this investigation was to examine the erosion performance of the SprayStirred surfaces and demonstrate the benefits of this novel process as a surface engineering technique. Volumetric analysis of the SprayStirred surfaces highlighted a drop of approx. 40% in the level of material loss when compared with the cold spray deposited coating prior to friction stir processing. Micro-hardness testing revealed that in the case of WC-CoCr reinforced coating, the hardness of the SprayStirred material exhibits an increase of approx. 540% over the unaltered substrate and 120% over the as-deposited composite coating. Microstructural examination demonstrated that the increase in the hardness of the MMC aligns with the improved dispersion of reinforcing particles throughout the aluminium matrix. (C) 2016 Elsevier B.V. All rights reserved.
机译:这项研究对SprayStir的开发进行了初步研究,SprayStir是一种创新的加工技术,可以在选定的基材上生成耐腐蚀的表面层。碳化钨-钴铬,碳化铬-镍铬和氧化铝涂层成功地冷喷涂在AA5083级铝上。为了提高冷喷涂工艺的沉积效率,使用双粉末进料系统将涂料与AA5083粉末共沉积,从而形成厚(> 300微米)的复合涂层。随后对沉积的涂层进行摩擦搅拌处理,以将颗粒嵌入基材中,以生成金属基复合材料(MMC)表面层。这项研究的主要目的是检查SprayStirred表面的腐蚀性能,并证明这种新颖工艺作为表面工程技术的好处。 SprayStirred表面的体积分析结果表明下降了约5%。与摩擦搅拌处理之前的冷喷涂沉积涂层相比,材料损失的水平为40%。显微硬度测试表明,在WC-CoCr增强涂层的情况下,SprayStirred材料的硬度呈现出大约5%的增长。在未改变的基材上占540%,在沉积后的复合涂层上占120%。显微组织检查表明,MMC硬度的增加与增强颗粒在整个铝基体中的分散性改善相吻合。 (C)2016 Elsevier B.V.保留所有权利。

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