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Effect of graphite additions on the intumescent behaviour of alkali-activated materials based on glass waste

机译:石墨添加对基于玻璃废物碱活性材料膨胀性能的影响

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Alkali-activated materials, were synthesized from glass waste powder (cullet from window-type sheets) with NaOH solution. In order to get a high porous microstructure, the hardened pastes were subjected for thermal treatment at temperatures of 400, 500, 600, 700, and 800?°C for 60?min. An important increase in the specimen's volume and porosity appeared during the thermal treatment; this is due to the foaming/intumescent phenomenon specific to this type of material. For the specimen's pastes based on the partial replacement of glass waste powder with graphite (1, 3 and 5?wt.%), it was determined that the increase of compressive strength assessed after thermally treated. The increase of graphite amount also resulted in the decrease of the initial temperature of the intumescent process (i.e., at 500?°C). The microstructure with high porosity after thermal treatment of these materials, with various sizes of closed pores, makes them suitable for use as both thermal and acoustical insulation materials.
机译:用NaOH溶液从玻璃废粉(来自窗口型片材的Cullet)合成的碱活化材料。为了获得高多孔微观结构,在400,500,600,700和800Ω℃的温度下进行固化浆料进行60℃的温度。在热处理期间,标本的体积和孔隙率的重要性增加;这是由于特异于这种类型材料的发泡/膨胀现象。基于玻璃废粉的玻璃废粉与石墨(1,3和5≤%)的分样的糊剂,确定热处理后评估的抗压强度的增加。石墨量的增加也导致膨胀过程的初始温度降低(即,在500Ω°C)。具有高孔隙率在这些材料的热处理后的微观结构,具有各种尺寸的封闭孔,使其适用于热和声学绝缘材料。

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