Strength Performance of Concrete Containing Rice Husk Ash as Cement Replacement in Presence of Polypropylene Fiber

A. Shakoor, S. A. Mangi
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Abstract

This study focuses on the utilization of Rice Husk Ash (RHA) as partial replacement of Ordinary Portland Cement (OPC) in concrete in addition with Polypropylene (PP) fiber. The main goal of this study was to decrease dependence on OPC and address environmental waste generated through rice mills. This study considered concrete cubes prepared through 1:2:4 ration with 0.50 water-cement ratio with and without RHA and PP fibers. The water curing was done for 7 and 28 days, with three specimens for each proportion, and the average value was considered as the result. It was observed that the compressive strength of M2 concrete which containing 10% RHA was noticed 7% higher than the control mix concrete and declared as 10% RHA as optimum dosage. Next, the performance in terms of compressive strength of concrete containing optimum dosage of RHA in presence of PP fibers of three different lengths were also evaluated and found that the 0.1% of PP fiber of 0.5 inches length gives the 25% higher strength performance as compared to the control mix and 17% higher than the concrete containing 10% RHA only at the age of 28days. Hence, this study concluded that the replacing OPC cement with 10% RHA produces satisfactory strength performance and incorporation of PP fiber gives better strength performances. 
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含有聚丙烯纤维的以稻壳灰为水泥替代物的混凝土的强度性能
本研究的重点是利用稻壳灰(RHA)作为混凝土中普通硅酸盐水泥(OPC)的部分替代品,并添加聚丙烯(PP)纤维。这项研究的主要目的是减少对 OPC 的依赖,并解决碾米厂产生的环境废物问题。本研究考虑了通过 1:2:4 的配比和 0.50 的水灰比制备的混凝土立方体,其中添加和不添加 RHA 和 PP 纤维。水养护时间分别为 7 天和 28 天,每种配比取三个试样,取平均值作为结果。结果表明,含有 10% RHA 的 M2 混凝土的抗压强度比对照组混凝土高出 7%,因此 10%的 RHA 被认为是最佳用量。接下来,还评估了含有三种不同长度 PP 纤维的最佳 RHA 用量混凝土的抗压强度表现,结果发现,与对照组相比,0.1% 的 0.5 英寸 PP 纤维在 28 天龄期时的强度表现高出 25%,仅比含有 10% RHA 的混凝土高出 17%。因此,这项研究得出结论,用 10%的 RHA 取代 OPC 水泥能产生令人满意的强度性能,而加入 PP 纤维则能产生更好的强度性能。
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Strength Performance of Concrete Containing Rice Husk Ash as Cement Replacement in Presence of Polypropylene Fiber Use of GIS and RS Tools for Analysis of Land Use Land Cover and Land Surface Temperature: A Case Study of District Khairpur, Pakistan Effect of Aluminium Fiber on the Strength property of Concrete
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