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Effect of Sand Replacement by Silica Sand on Strength of Fibers Reinforced Foamed Concrete

机译:硅砂替代砂对纤维增强泡沫混凝土强度的影响

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To investigate the effect of sand type and particles grading, three (1200 kg/m3) foamed concrete mixes were produced with conventional sand (particles size <;2.36), conventional sand (partials size <;0.5mm) and silica sand (partials size <;0.5mm). Additionally, three more (1200 kg/m3) foamed concrete mixes were reinforced by Polypropylene fibers (0.5% of volume) with different lengths (12, 18, 30 mm) and tested to examine the effect of added fibers and their lengths on the strength of foamed concrete. Absolute volume method was adopted to design the investigated mixes, while pre-foamed foam method was adopted to produce the foamed concrete mixes. It was found that replacing of conventional sand by silica sand helped in increasing both compressive and splitting tensile strengths. Also, an increase of strength was noticed with decreasing the particles grading of conventional sand from 2.36mm to 0.5mm. Moreover, reinforced foamed concrete mixes by Polypropylene fibers showed the highest strengths compared to those without fibers. Furthermore, incorporation of silica sand and polypropylene fibers together has the most beneficial influence on the strength of foamed concrete.
机译:为了研究砂型和颗粒分级的影响,用常规砂(颗粒尺寸<; 2.36),常规砂(部分尺寸<; 0.5mm)和硅砂(部分尺寸)生产了三种(1200 kg / m3)泡沫混凝土混合物<; 0.5mm)。此外,另外三种(1200 kg / m3)泡沫混凝土混合物用长度(12、18、30 mm)不同的聚丙烯纤维(体积的0.5%)进行了增强,并进行了测试,以检查添加的纤维及其长度对混凝土的影响。泡沫混凝土的强度。采用绝对体积法设计了所研究的混合物,同时采用了预发泡泡沫法来制备泡沫混凝土混合物。发现用硅砂代替常规砂有助于增加抗压强度和劈裂抗张强度。另外,随着常规沙子的颗粒分级从2.36mm降低到0.5mm,注意到强度增加。此外,与没有纤维的混凝土相比,聚丙烯纤维的增强泡沫混凝土混合物表现出最高的强度。此外,将硅砂和聚丙烯纤维结合在一起对发泡混凝土的强度具有最有利的影响。

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