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Development of a high-temperature inorganic synthetic foam with recycled fly-ash cenospheres for thermal insulation brick manufacturing

机译:开发具有再生粉煤灰空心球的高温无机合成泡沫,用于制造保温砖

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摘要

In this study, a novel inorganic synthetic solid foam composed of recycled fly-ash cenospheres (FACs) is developed with low-density, good thermal insulation performance, and reasonable mechanical strength. The manufacturing process utilizes low-fraction clay binder materials diluted in water, enabling a self-assembling mechanism assisted by natural capillary effect to form minimal contacts among the FACs. The microstructure and minimal contact formation were confirmed by optical and electron microscope imaging. Both thermal and mechanical properties of the fly-ash cenosphere synthetic solid foam (FAC-SSF) materials were experimentally studied as functions of key material parameters including cenosphere particle size and clay content. A numerical model was developed to predict the effective thermal conductivity of FAC-SSF using a three-step homogenization method which takes into account different thermal percolation paths within the material. The inorganic synthetic foam developed has the potential for thermal insulation applications taking advantage of their relatively simple, low-cost, and scalable manufacturing process, minimal use of binder materials, and relatively high mechanical strength and highly tailorable properties. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在这项研究中,开发了一种由回收的粉煤灰空心球(FAC)组成的新型无机合成固体泡沫,它具有低密度,良好的隔热性能和合理的机械强度。该制造工艺利用在水中稀释的低级粘土黏合剂材料,通过自然的毛细作用实现了自组装机制,从而使FAC之间形成最小的接触。通过光学和电子显微镜成像确认了微观结构和最小的接触形成。实验研究了粉煤灰空心球合成固体泡沫(FAC-SSF)材料的热性能和机械性能,作为关键材料参数(包括空心球粒径和粘土含量)的函数。使用三步均化方法,开发了一个数值模型来预测FAC-SSF的有效导热系数,该方法考虑了材料内的不同热渗透路径。所开发的无机合成泡沫具有相对简单,低成本和可扩展的制造工艺,很少使用粘合剂材料以及相对较高的机械强度和高度可定制的特性,因而具有隔热应用的潜力。 (C)2019 Elsevier Ltd.保留所有权利。

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