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Fabrication and characterization of aluminum silicate fiber-reinforced hollow mesoporous silica microspheres composites

机译:硅酸铝纤维增强中空介孔二氧化硅微球复合材料的制备与表征

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摘要

Aluminum silicate fiber (ASF)/hollow mesoporous silica microspheres (HMSM) composites were fabricated by a vacuum filtration technique, followed by pressureless sintering at 1100 °C. Properties namely: bulk density, microstructure, mechanical strength and thermal conductivity were investigated with the ASF content. Results showed that bulk density of the resultant composites increased from 0.17 to 0.26 g/cm~3 with the increase of ASF content, and the ASF was intimately bonded to the HMSM matrix. When the ASF content was 15 wt.%, the composites exhibited the highest compressive strength (5.07 MPa) and flexural strength (3.32 MPa), then the mechanical strength decreased on further addition (20 wt.%). The thermal conductivity of composites ranged from 0.048 to 0.081 W/(m K) at room temperature, which makes aluminum silicate fiber/hollow mesoporous silica microspheres composites a promising choice for thermal insulation.
机译:硅酸铝纤维(ASF)/中孔二氧化硅微球(HMSM)复合材料是通过真空过滤技术制造的,然后在1100°C下进行无压烧结。用ASF含量研究了性质,即:堆积密度,微观结构,机械强度和导热率。结果表明,随着ASF含量的增加,复合材料的堆积密度从0.17增加到0.26 g / cm〜3,并且ASF与HMSM基体紧密结合。当ASF含量为15重量%时,复合材料表现出最高的抗压强度(5.07MPa)和抗弯强度(3.32MPa),然后机械强度在进一步添加时降低(20重量%)。室温下复合材料的导热系数在0.048至0.081 W /(m K)范围内,这使得硅酸铝纤维/空心介孔二氧化硅微球复合材料成为隔热材料的理想选择。

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