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Influence of expanded vermiculite powder and silica fume on properties of foam concretes

机译:膨胀蛭石粉和二氧化硅烟雾对泡沫混凝土性能的影响

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This study focuses on production of foam concrete that presents thermal insulation property. Foam concretes were produced using cement, expanded vermiculite powder, silica fume and the generated foam. Foam agent, which was protein based, was utilized to obtain foam having different concentrations. Cement content was used between 356 and 643 kg/m(3). The foam concretes were cast into the moulds with a size of 200 x 200 x 500 mm prism and cylinder with O150 x 300 mm. Viscosity, fresh and dry unit weights, water absorption, ultrasound, compressive strength, capillarity and thermal conductivity tests were achieved. Foam concretes were kept in laboratory ambient temperature and subjected to 300 degrees C. A scanning electron microscope (SEM) images were also obtained for observations of microstructures of specimens. As a result of the study, foam concretes having different compressive strengths of 0.43.7 MPa, dry unit weights of 587-1040 kg/m(3), thermal conductivities of 0.059-0.237 W/mK and porosity of 70.6%-89.5% were obtained. Test results were discussed considering the effects of foam concentration and elevated temperature and also compared to the results in the literature in detail. Foam concretes with expanded vermiculite powder presented promising results in point of thermal conductivity. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本研究侧重于生产保温性能的泡沫混凝土。使用水泥,膨胀的蛭石粉,二氧化硅烟雾和产生的泡沫生产泡沫混凝土。利用蛋白质是基于蛋白质的泡沫剂来获得具有不同浓度的泡沫。水泥含量在356和643 kg / m(3)之间使用。将泡沫混凝土铸造成模具,尺寸为200×200×500mm棱镜和圆柱,o150 x 300mm。达到粘度,新鲜干燥的单位重量,吸水,超声波,抗压强度,毛细血管性和导热性试验。泡沫混凝土在实验室环境温度下保持并进行300℃。还获得扫描电子显微镜(SEM)图像以观察标本的微观结构。由于该研究的结果,具有0.43.7MPa的不同抗压强度的泡沫混凝土,干燥单位重量为587-1040kg / m(3),导热率为0.059-0.237w / mk,孔隙率为70.6%-89.5%-89.5%-89.5%-89.5%-89.5%-89.5%-89.5%获得了。考虑到泡沫浓度和升高的温度的影响,讨论了测试结果,并详细地与文献中的结果相比。具有膨胀蛭石粉的泡沫混凝土呈现出导热点的有希望的结果。 (c)2020 elestvier有限公司保留所有权利。

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