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Preliminary Tests of Cellular SiC/Iron Alloy Composite Produced by a Pressureless Infiltration Technique

机译:无压浸渗技术制备蜂窝状SiC /铁合金复合材料的初步试验

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Preliminary tests aimed at obtaining a cellular SiC/iron alloy composite with a spatial structure of mutually intersecting skeletons, using a porous ceramic preform have been conducted. The possibility of obtaining such a composite joint using a SiC material with an oxynitride bonding and grey cast iron with flake graphite has been confirmed. Porous ceramic preforms were made by pouring the gelling ceramic suspension over a foamed polymer base which was next fired. The obtained samples of materials were subjected to macroscopic and microscopic observations as well as investigations into the chemical composition in microareas. It was found that the minimum width of a channel in the preform, which in the case of pressureless infiltration enables molten cast iron penetration, ranges from 0.10 to 0.17 mm. It was also found that the ceramic material applied was characterized by good metal wettability. The ceramics/metal contact area always has a transition zone (when the channel width is big enough), where mixing of the components of both composite elements takes place.
机译:已经进行了旨在使用多孔陶瓷预成型件获得具有相互交叉的骨架的空间结构的蜂窝状SiC /铁合金复合材料的初步测试。已经证实了使用具有氧氮化物键的SiC材料和具有鳞片状石墨的灰口铸铁获得这种复合接头的可能性。多孔陶瓷预成型件是通过将凝胶状陶瓷悬浮液倒在泡沫聚合物基体上制成的,然后将其焙烧。对获得的材料样品进行宏观和微观观察,并研究微区中的化学成分。已经发现,在无压渗透的情况下,铸铁中的通道的最小宽度在0.10至0.17mm的范围内,该最小宽度在无压力渗透的情况下能够使熔融铸铁渗透。还发现所用的陶瓷材料具有良好的金属润湿性。陶瓷/金属接触区域始终具有过渡区域(当通道宽度足够大时),两个复合元素的成分在此处发生混合。

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