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Several properties of mineral admixtured lightweight mortars at elevated temperatures

机译:矿物掺合轻质砂浆在高温下的若干性能

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The improvement of thermal and mechanical properties of mortars including expanded perlite aggregate (EPA) containing either clinoptilolite, a type of natural zeolite (NZ), waste glass powder (GP) or blast furnace slag (BFS) cured at elevated temperature was analyzed using thermal conductivity, compressive strength, flexure strength and dry unit weight. EPA mortar specimens were prepared by replacing a varying part of the portland cement with the above minerals. All mortar samples were prepared and cured at 23±1℃ lime saturated water for 28 days. The maximum thermal conductivity of 1.3511W/mK was determined with the control samples containing plain cement. GP has shown 1 and 4% decrease for both 10, 20% GP and 25% EPA, respectively. Both BFS and NZ have a decreasing effect on thermal conductivity. The experiments were carried out, in which the samples were subjected to temperature of 300, 500 and 800℃ for 2h, then cooled in air. The results indicated that all the mortars exposed to temperature of 500 and 800℃ shown a significant decrease in thermal conductivity, compressive strength and flexure strength. However, compared with the mortars including 25% EPA, adding the other admixtures at all level replacement decreased thermal conductivity, compressive strength, flexure strength and dry unit weight as a function of replacement percent.
机译:使用热分析法分析了砂浆的热和机械性能的改善,这些砂浆包括含有斜发沸石,一种天然沸石(NZ),废玻璃粉(GP)或高炉矿渣(BFS)的膨胀珍珠岩骨料(EPA)导电性,抗压强度,挠曲强度和干重。 EPA砂浆样品是通过用上述矿物替代硅酸盐水泥的不同部分而制备的。准备所有砂浆样品,并在23±1℃的石灰饱和水中固化28天。用含普通水泥的对照样品测得的最大热导率为1.3511W / mK。 GP分别显示10%,20%GP和25%EPA下降了1%和4%。 BFS和NZ对导热系数的影响均减小。进行实验,其中样品在300、500和800℃的温度下经受2小时,然后在空气中冷却。结果表明,所有暴露于500和800℃的砂浆的导热系数,抗压强度和抗弯强度均显着降低。但是,与含25%EPA的砂浆相比,在所有含量的替代物中添加其他掺混料均会降低导热系数,抗压强度,挠曲强度和干重,这是替代百分比的函数。

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