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SiOC glass modified by montmorillonite clay

机译:蒙脱土改性的SiOC玻璃

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The addition of inexpensive montmorillonite clay to a silicone resin employed as preceramic polymer was found to be advantageous for the production of SiOC glass matrix composites. Dense SiOC based monoliths were achieved with the addition of a substantial amount of calcined clay (30 wt. percent) to the preceramic polymer; these composites exhibited remarkable hardness and fracture toughness, higher than those of SiOC glasses reported in the literature, due to the very small dimensions of silica and mullite crystal inclusions deriving from the decomposition of clay. Microcellular SiOC glass based microcellular foams were also produced, from composites filled by both calcined and organically functionalized clay. The inclusions from the decomposition of clay provided for the retention of the microcellular structure even after oxidation at 1200 and 1450 deg C. Functionalized clay showed a more pronounced effect in limiting the extent of the densification and collapse of microcellular shape than calcined clay. In both cases, the crushing strength after oxidation was found to be particularly remarkable.
机译:发现向用作陶瓷陶瓷前体的硅树脂中添加廉价的蒙脱土粘土对于生产SiOC玻璃基复合材料是有利的。通过向预陶瓷聚合物中添加大量的煅烧粘土(30重量%)来获得致密的基于SiOC的整料。这些复合材料显示出显着的硬度和断裂韧性,高于文献中报道的SiOC玻璃,原因是由于粘土分解产生的二氧化硅和莫来石晶体夹杂物的尺寸非常小。还由煅烧和有机官能化粘土填充的复合材料生产了基于微孔SiOC玻璃的微孔泡沫。即使在1200和1450℃下氧化之后,来自粘土分解的夹杂物仍保留了微孔结构。功能化的粘土在限制微孔形状的致密化和塌陷程度方面显示出比煅烧粘土更明显的作用。在这两种情况下,发现氧化后的抗碎强度特别显着。

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