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A novel method for incorporation of micron-sized SiC particles into molten pure aluminum utilizing a Co coating

机译:一种利用Co涂层将微米级siC颗粒掺入熔融纯铝中的新方法

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摘要

Ceramic particles typically do not have sufficiently high wettability by molten metal for effective bonding during metal matrix composite fabrication. In this study, a novel method has been used to overcome this drawback. Micron-sized SiC particles were coated by a cobalt metallic layer using an electroless deposition method. A layer of cobalt on the SiC particles was produced prior to incorporation in molten pure aluminum in order to improve the injected particle bonding with the matrix. For comparison, magnesium was added to the melt in separate experiments as a wetting agent to assess which method was more effective for particle incorporation. It was found that both of these methods were more effective as regard ceramic particulate incorporation compared with samples produced with as-received SiC particles injected into the pure aluminum matrix. SEM images indicated that cobalt coating of the particles was more effective than magnesium for incorporation of fine SiC particles (below 30 lm), while totally the incorporation percentage of the particles was higher for a sample in which Mg was added as a wetting agent. In addition, microhardness tests revealed that the cobalt coating leads to the fabrication of a harder composite due to increased amount of ceramic incorporation, ceramic-matrix bonding, and possibly also to formation of Al-Co intermetallic phases.
机译:陶瓷颗粒通常不具有足够高的熔融金属润湿性,以在金属基质复合材料的制造过程中有效地粘结。在这项研究中,一种新颖的方法已被用来克服这一缺点。使用化学沉积方法,将微米级的SiC颗粒涂覆在钴金属层上。在掺入熔融纯铝之前,要在SiC颗粒上产生一层钴,以改善注入的颗粒与基体的结合力。为了进行比较,在单独的实验中将镁作为润湿剂添加到熔体中,以评估哪种方法更有效地掺入颗粒。已发现,与将原样SiC颗粒注入纯铝基体中制备的样品相比,这两种方法在陶瓷颗粒结合方面都更有效。 SEM图像表明,钴颗粒涂层比细镁颗粒更能有效地掺入细小的SiC颗粒(30 lm以下),而对于其中添加了Mg作为润湿剂的样品,颗粒的掺入率更高。此外,显微硬度测试表明,钴涂层的产生是由于增加了陶瓷的掺入量,陶瓷-基体的结合,还可能形成了Al-Co金属间相,从而导致了硬质复合材料的制造。

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