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Hydroxyethyl cellulose/alumina-based aerogels as lightweight insulating materials with high mechanical strength

机译:羟乙基纤维素/氧化铝基气凝胶作为具有高机械强度的轻质绝缘材料

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摘要

Alumina aerogels reinforced with hydroxyethyl cellulose (HEC) have been successfully synthesised using an environmentally friendly freeze-drying method. Alumina aerogels are materials with interesting properties, such as low density, high-temperature stability, high porosity and high surface area, which can be used in several industrial applications. It is necessary to add one or more supporting materials, such as carbon nanofibres and a fibrous second phase such as cellulose, to the matrix to reinforce the mechanical properties of the aerogels. In this study, the influence of the HEC-to-aluminium tri-sec-butoxide (ASB) solution mass ratio on the morphological, mechanical and thermal properties of the synthesised aerogels and its impact on the thermal insulation properties of the resulting materials were evaluated. The apparent density of the hydroxyethyl cellulose-reinforced alumina-based aerogels increased with the amount of HEC. Thus, compact structures with a small pore size were obtained when increasing HEC/ASB solution mass ratio. The incorporation of HEC into the ASB matrix led to an increase in the mechanical properties in terms of the Young's modulus. Thermal stability of samples varied as a consequence of the HEC addition. Thus, the second decomposition stage shifted to lower temperatures with HEC incorporation. In addition, all synthesised aerogels showed low thermal conductivities. The remarkable physical characteristics of the hydroxyethyl cellulose-reinforced alumina-based aerogels prepared herein and the successful synthesis suitable for scale-up make them a good candidate for construction applications.
机译:使用环保的冷冻干燥方法成功地合成了用羟乙基纤维素(HEC)加固的氧化铝气凝胶。氧化铝Aerogels是具有有趣性质的材料,例如低密度,高温稳定性,高孔隙率和高表面积,可用于多种工业应用中。必须向基质中添加一种或多种支撑材料,例如碳纳米纤维和纤维第二相,例如纤维素,以增强气孔的机械性能。在该研究中,评估了HEC-铝三叔秒丁氧化物(ASB)溶液质量比对合成气凝胶的形态,机械和热性能及其对所得材料的绝热性能的影响的影响。羟乙基纤维素增强氧化铝基风的表观密度随HEC的量而增加。因此,在增加HEC / ASB溶液质量比时获得具有小孔径的紧凑结构。将HEC掺入ASB矩阵导致杨氏模量方面的机械性能增加。样品的热稳定性因HEC添加而变化。因此,第二分解阶段与HEC Inclatoration移位到较低的温度。此外,所有合成的气凝胶显示出低热导流性。本文制备的羟乙基纤维素增强氧化铝基气凝胶的显着物理特性和适用于鳞片的成功合成使其成为施工应用的良好候选者。

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  • 来源
    《Journal of Materials Science》 |2018年第2期|共12页
  • 作者单位

    Univ Castilla La Mancha Dept Chem Engn Av Camilo Jose Cela 12 E-13071 Ciudad Real Spain;

    Univ Castilla La Mancha Dept Chem Engn Av Camilo Jose Cela 12 E-13071 Ciudad Real Spain;

    Univ Castilla La Mancha Dept Chem Engn Av Camilo Jose Cela 12 E-13071 Ciudad Real Spain;

    Univ Castilla La Mancha Dept Chem Engn Av Camilo Jose Cela 12 E-13071 Ciudad Real Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
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