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Preparation, microstructure, properties and foaming mechanism of a foamed ceramics with high closed porosity

机译:高封闭孔隙率发泡陶瓷的制备,微观结构,性能和发泡机理

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摘要

Foamed ceramics with high closed porosity are prepared by the direct foaming method. The foamed ceramics prepared from a green body with a weight ratio of quartz, calcium carbonate, talc and silicon nitride of 63.0:13.5:13.5:10.0 at 1200 degrees C have a uniform internal microstructure with many well-distributed pores that are independent of each other, relatively high compressive strength of 6.9 MPa and high closed porosity of 85%. Almost all of the pores in the foamed ceramics are closed because of the sealing of the continuous dense surface of the foamed ceramics. During sintering at 1200-1250 degrees C, the quartz and oxidation-derived amorphous silica are in a molten state and soon melt into a whole, the outer oxygen with relatively small atomic volume can still react with silicon nitride grains after diffusing inwards through the molten phase, while the oxidation-derived nitrogen with relatively large atomic volume could hardly diffuse outwards through the molten phase but aggregates at where it generated in the samples which is the reason resulting in volume expansion of the samples like the slow inflation of a balloon.
机译:具有高封闭孔隙率的发泡陶瓷通过直接发泡方法制备。从生坯制备的泡沫陶瓷,重量比的石英,碳酸钙,滑石和氮化硅为63.0:13.5:13.5:10.0,具有均匀的内部微观结构,具有许多良好的分布孔,它们独立于每个其他,相对较高的抗压强度为6.9MPa和高闭合孔隙率为85%。由于泡沫陶瓷的连续致密表面的密封,泡沫陶瓷中的几乎所有孔都闭合。在烧结期间,在1200-1250℃下,石英和氧化衍生的无定形二氧化硅在熔融状态下并且很快熔化成整体,具有相对小的原子体积的外氧可以在通过熔融向内漫射后与氮化硅颗粒反应阶段,而具有相对大的原子体积的氧化衍生的氮气可以难以通过熔融的相向外弥漫,而在样品中产生的聚集体,这是导致样品的体积膨胀的原因,如气球的缓慢膨胀。

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