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Direct foaming driven synthesis and thermophysical characterization of silica-alumina foams: Applications for thermal insulation

机译:二氧化硅 - 氧化铝泡沫的直接发泡驱动合成及热物理表征:保温应用

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摘要

Using earth-abundant materials such as quartz and corundum powders as precursors, we have developed a simple, but effective low energy direct foaming based method for synthesis of thermally insulating porous foams with thermal conductivity as low as 0.08 W/mK. Specifically, the adopted synthesis procedure provides a straightforward avenue for obtaining closed-cell silica-alumina foams, with densities ranging from 1.7 to 0.22 g/cc. The ability to tune the densities is achieved by controlled addition of blowing agents (H2O2) and surfactants (stearic acid) respectively. The thermal conductivity of these foams decreased monotonically with increasing porosity (or decreasing densities), and the density-thermal conductivity relationship is governed by a power law. In addition, morphological and structural characterization was performed via optical and electron microscopy, x-ray diffraction, and nuclear magnetic resonance, and the results from these studies are also discussed in the context of structural evolution of the foams as a function of porosity. While this work represents a straightforward and simple path towards obtaining silica-alumina foams with very low density, the developed method is directly applicable to obtaining a wider variety of multicomponent ceramic foams.
机译:使用石英和鲤儒粉体等地球丰的材料作为前体,我们开发了一种简单但有效的低能量直接发泡的基于方法,用于合成热绝缘多孔泡沫,导热率低至0.08W / mK。具体地,采用的合成方法提供了一种用于获得闭孔二氧化硅 - 氧化铝泡沫的直接途径,密度范围为1.7-0.22g / cc。通过控制吹入剂(H 2 O 2)和表面活性剂(硬脂酸)来实现密度的能力。这些泡沫的导热率随着孔隙率(或减小密度)而单调地减小,并且密度导热率关系受到权力法管辖。此外,通过光学和电子显微镜,X射线衍射和核磁共振进行形态学和结构表征,并且在泡沫的结构演化的背景下也讨论了这些研究的结果作为孔隙率的函数。虽然该工作代表了具有非常低密度的二氧化硅 - 氧化铝泡沫的直接和简单的路径,但是开发方法直接适用于获得更广泛的多组分陶瓷泡沫。

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