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The Influence of Compressive Strength of EPS Concrete using Fiberglass with Curing and Non Curing Treatment

机译:用玻璃纤维对固化性和不固化治疗玻璃纤维抗压强度的影响

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Concrete is a mixture of portland cement, fine aggregate, coarse aggregate and water, with or without additives which form a solid mass. The purpose of this study was to find and innovative method of producing concrete mix from solid waste material as alternative. The alternative materials used in concrete mix was fiberglass. Material reduction in the sand on the concrete can decreases the strength until the fiberglass material added and increase the compressive strength on concrete. The composition of fiberglass that used in this study was 0%, 0.5%, 1%, 1.5%, 2%, 2.5%. The methodology used is the design of concrete mix in according to SNI 03-2834-2000. The results are concrete with the addition of EPS can reduce the density and the compressive strength of normal concrete, concrete EPS was added to increase the value of compressive strength fiberglass. The addition of fiberglass in concrete EPS only on the variable of 0.5% - 1% fiberglass, if greater than 1%, the compressive strength of concrete decreased because the material has not homogeneous concrete during mixing. The largest density value of 10% EPS concrete with fiberglass on the concrete test 28 days is the concrete EPS 10% + 0.5% fiberglass by weight of the curing process and the type of 2127.73 MPa and compressive strength are the largest and EPS concrete with compressive strength amounted to 11.277 MPa. The addition of 10% EPS can reduce the compressive strength of concrete at 3.75%. The addition of fiberglass obtained with a percentage of 0.5% - 1% is the most effective additions so as to improve the quality of concrete by 0.74%. Concrete with compressive strength has a curing system which is much better than the noncuring concrete, because concrete experience of concrete hydration reaction process which takes place optimally.
机译:混凝土是波特兰水泥,细骨料,粗骨料和水的混合物,有或没有形成固体质量的添加剂。本研究的目的是寻找和创新制造与固体废料混凝土混合物作为替代品的创新方法。混凝土混合物中使用的替代材料是玻璃纤维。混凝土上的砂的材料减少可以降低强度,直到玻璃纤维材料添加并增加混凝土上的抗压强度。本研究中使用的玻璃纤维的组成为0%,0.5%,1%,1.5%,2%,2.5%。使用的方法是根据SNI 03-2834-2000的混凝土混合设计。结果是混凝土随着EPS的添加可以降低正常混凝土的密度和抗压强度,加入混凝土EPS以增加压缩强度玻璃纤维的值。在混凝土EPS中加入玻璃纤维仅在0.5%-1%玻璃纤维的变量上,如果大于1%,混凝土的抗压强度降低,因为材料在混合过程中没有均匀的混凝土。最大密度值10%的EPS混凝土在混凝土试验上用玻璃纤维进行混凝土28天是固化过程的混凝土EPS 10%+ 0.5%玻璃纤维,2127.73MPa和抗压强度的类型是最大的和EPS混凝土的压缩强度达11.277MPa。添加10%的EPS可以降低混凝土的抗压强度为3.75%。添加百分比为0.5%-1%的玻璃纤维是最有效的添加,以提高混凝土质量0.74%。具有抗压强度的混凝土具有比非固定混凝土更好的固化系统,因为混凝土水合反应过程的具体经验。

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