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Engineering Properties of High Strength Blended Concrete Enhanced with Nano POFA

机译:用纳米POFA改变高强度混凝土的工程性能

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Global demand for cement in construction industry is expected to increase to 400% by year 2050 hence, contributes to the increasing global CO2 emission. One of the alternative options that considered realistic to reduce usage of cement is using the blended concrete which replacing cement with other waste materials that contain cementitious properties. In this study, the engineering properties of high strength blended concrete such as workability, compressive, splitting tensile and flexural strengths were investigated. To achieve the aim, a total of 126 concrete specimens were produced that consist of concrete cubes, cylinders and prisms. Ten different mixes of blended concrete with the cement replacement of 0 to 30% of the 45-micron size of POFA and 1-3% of nano POFA. The hardened properties of blended concrete were determined at the age of 7, 28 and 90 days. The findings revealed that, the enhancement of the 2-3% of nano POFA improved the concrete workability with 5 to 10 mm increment of slump height. At all age of curing, the blended concrete consists of 10% of micro POFA and 1 to 3% of nano POFA showed a higher strength compared with the plain concrete. The highest enhancement strength of compressive, splitting tensile and flexural were 4%, 10% and 11% respectively at certain age of curing. These results showed the improvement of the engineering properties of the blended concrete with enhancement of the nano POFA.
机译:2050年,建筑业对建筑业水泥的全球需求增加到400%,因此有助于增加全球二氧化碳排放量。考虑减少水泥用法的替代选择之一是使用混合混凝土用混合物用含有含有水泥性能的其他废物。在这项研究中,研究了高强度混合混凝土的工程性能,如可操作性,压缩,分裂拉伸和弯曲强度。为实现目的,共产生126个混凝土标本,由混凝土立方体,气缸和棱镜组成。 10种不同的混凝土混合混凝土,水泥更换为45微米尺寸的POFA和1-3%的纳米POFA的0%至30%。混合混凝土的硬化性质在7,28和90天的年龄确定。结果表明,增强2-3%的纳米POFA改善了5至10毫米的坍落度高度的混凝土可加工性。在固化时期,混合混凝土由10%的微型POFA组成,与普通混凝土相比,10%的微型POFA和1至3%的纳米POFA显示出更高的强度。在一定年龄的固化时,压缩性,分裂拉伸和弯曲的最高增强强度分别为4%,10%和11%。这些结果表明,增强纳米POFA的混纺混凝土工程性能的改善。

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