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首页> 外文期刊>Construction and Building Materials >Synthesis of white cement bonded porous fumed silica-based composite for thermal insulation with low thermal conductivity via a facile cast-in-place approach
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Synthesis of white cement bonded porous fumed silica-based composite for thermal insulation with low thermal conductivity via a facile cast-in-place approach

机译:通过简便的现浇法合成低导热系数的白水泥粘结的多孔热解法二氧化硅基复合材料

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High performance thermal insulation material was prepared by fumed silica as thermal insulation matrix, white cement as binder. SiC powder was incorporated as an opacifier. Short glass fibers were added to increase stiffness and minimize contraction. The samples were produced within 4 days under ambient pressure with no complicated equipment. The influences caused by white cement amount on the properties were investigated to achieve the optimal performance. A low thermal conductivity 0.033 W.m(-1).K-1 at 25 degrees C and a low thermal conductivity 0.038 W.m(-1).K-1 at 800 degrees C were achieved based on the experimental results. The linear shrinkage of the insulation up to 800 degrees C in air for 30 min was 7.54%. In addition, the insulation exhibited a compression stress above 0.15 MPa (3% strain). The relation between structure and performances was revealed. That we here publicly reported thermal insulation materials synthetized by nano-powder and inorganic binder might reveal a new method for synthesis high performance thermal insulation materials. Based on the simplicity of the manufacturing process, the optimized material properties and cheap cost of raw materials, we believe this technology can act as an effective thermal insulation material for buildings and myriad applications requiring improved thermal efficiency. (C) 2019 Elsevier Ltd. All rights reserved.
机译:以气相法二氧化硅为绝热基质,白水泥为粘结剂,制备了高性能绝热材料。加入SiC粉作为遮光剂。添加短玻璃纤维以增加刚度并使收缩最小化。样品是在环境压力下于4天内生产的,没有复杂的设备。研究了白水泥用量对性能的影响,以达到最佳性能。根据实验结果,获得了在25摄氏度时的低热导率0.033 W.m(-1).K-1和在800摄氏度时的低热导率0.038 W.m(-1).K-1。绝缘材料在空气中在800摄氏度下持续30分钟的线性收缩率为7.54%。另外,绝缘体表现出高于0.15 MPa(3%应变)的压缩应力。揭示了结构与性能之间的关系。我们在这里公开报道了由纳米粉末和无机粘合剂合成的隔热材料,可能揭示了一种合成高性能隔热材料的新方法。基于制造过程的简单性,优化的材料性能和廉价的原材料成本,我们认为该技术可以用作建筑物和各种需要提高热效率的有效隔热材料。 (C)2019 Elsevier Ltd.保留所有权利。

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