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Study on Chloride Ion Penetration Resistance of Rubberized Concrete Under Steady State Condition

机译:稳态下橡胶混凝土抗氯离子渗透性的研究

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Foamed concrete is a controlled low density ranging from 400kg/m3 to 1800kg/m3, and hence suitable for the construction of buildings and infrastructures. The uniqueness of foamed concrete is does not use aggregates in order to retain low density. Foamed concrete contains only cement, sand, water and foam agent. Therefore, the consumption of cement is higher in producing a good quality and strength of foamed concrete. Without the present of aggregates, the compressive strength of foamed concrete can only achieve as high as 15MPa. Therefore, this study aims to introduce the pelletized coconut fibre aggregate to reduce the consumption of cement but able to enhance the compressive strength. In the experimental study, forty-five (45) cube samples of foamed concrete with density 1600kg/m3 were prepared with different volume fractions of pelletized coconut fibre aggregate. All cube samples were tested using the compression test to obtain compressive strength. The results showed that the compressive strength of foamed concrete containing 5%, 10%, 15% and 20% of pelletized coconut fibre aggregate are 9.6MPa, 11.4MPa, 14.6MPa and 13.4MPa respectively. It is in fact higher than the controlled foamed concrete that only achieves 9MPa. It is found that the pelletized coconut fibre aggregate indicates a good potential to enhance the compressive strength of foamed concrete.
机译:发泡混凝土的受控密度低,范围从400kg / m3到1800kg / m3,因此适用于建筑和基础设施。泡沫混凝土的独特性是不使用骨料来保持低密度。泡沫混凝土仅包含水泥,沙子,水和泡沫剂。因此,在生产良好质量和强度的泡沫混凝土时,水泥的消耗较高。如果没有骨料,泡沫混凝土的抗压强度只能达到15MPa。因此,本研究旨在引入粒状椰子纤维骨料以减少水泥的消耗,但能够提高抗压强度。在实验研究中,制备了四十五(45)个密度为1600kg / m3的泡沫混凝土立方体样品,其中包含不同体积分数的造粒椰子纤维骨料。使用压缩测试测试所有立方体样品,以获得压缩强度。结果表明,含5%,10%,15%和20%椰壳纤维粒料的泡沫混凝土的抗压强度分别为9.6MPa,11.4MPa,14.6MPa和13.4MPa。实际上比仅达到9MPa的受控泡沫混凝土要高。已经发现,造粒的椰子纤维聚集体显示出增强泡沫混凝土抗压强度的良好潜力。

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