Cement and Clay Bricks Reinforced with Coconut Fiber and Fiber Dust

Q3 Engineering Advances in Technology Innovation Pub Date : 2022-09-24 DOI:10.31357/ait.v2i3.6046
A. M. Rajapakse, Sanura N. Sanjula, Kelum Nishantha, T. R. Bandara, Dulini, Y. Mudunkotuwa
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Abstract

For generations, Sri Lankans use cement bricks and clay bricks as common building materials in the construction field. This study investigates the feasibility of improving the strength while lowering the mass and thermal conductivity of bricks by adding coconut fiber or coconut fiber dust as a reinforcing material. Each reinforcing material is used in both clay and cement bricks. The mixtures are prepared according to varying volume ratios of the raw materials used. Coconut fibers are combed and cut into 4-5 cm pieces and dry coconut fiber dust is sieved using a 4 mm sieving mesh. The mixture is prepared by hand mixing and the traditional processes are replicated in making the bricks. Tests are carried out to understand the variation of mass, compressive strength, thermal conductivity, and water absorption of the reinforced bricks in comparison to bricks with no reinforced material. The cement brick reinforced with coconut fiber achieves the expected results in the compressive strength test and thermal conductivity test but underperformed when comparing masses and water absorption. Clay bricks reinforced with coconut fiber dust show impressive results in compressive tests and with the addition of dust, the appearance seems to have changed. It is observed that reinforcing cement bricks with coconut fiber could double the compressive strength along with a 5% reduction in mass. Reinforcing clay bricks with coconut fiber dust increases its compressive strength by over 70% while decreasing the mass by over 30 %. The study proves that it is feasible to use reinforced coconut fiber or coconut fiber dust to improve the properties of both clay and cement bricks, while clay bricks reinforced with coconut fiber are an exception.
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椰子纤维和纤维粉尘增强水泥和粘土砖
世世代代,斯里兰卡人在建筑领域使用水泥砖和粘土砖作为常见的建筑材料。本研究探讨了添加椰子纤维或椰子纤维粉尘作为增强材料,在提高砖的强度的同时降低砖的质量和导热系数的可行性。每种增强材料都用于粘土和水泥砖。根据所用原料的不同体积比制备混合物。将椰子纤维精梳并切成4-5厘米的碎片,用4毫米筛网筛干椰子纤维粉尘。这种混合物是通过手工混合制备的,在制作砖块时复制了传统的工艺。试验进行了了解的变化质量,抗压强度,导热性和吸水性的增强砖与砖没有增强材料。椰子纤维增强水泥砖在抗压强度和导热系数测试中达到预期结果,但在质量和吸水率测试中表现不佳。用椰子纤维粉尘加固的粘土砖在压缩测试中表现出令人印象深刻的结果,并且随着粉尘的加入,外观似乎发生了变化。用椰子纤维加固水泥砖,其抗压强度可提高一倍,质量可降低5%。用椰子纤维粉加固粘土砖,其抗压强度提高70%以上,质量降低30%以上。研究证明,使用增强椰子纤维或椰子纤维粉尘改善粘土砖和水泥砖的性能都是可行的,而椰子纤维增强粘土砖则是一个例外。
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来源期刊
Advances in Technology Innovation
Advances in Technology Innovation Energy-Energy Engineering and Power Technology
CiteScore
1.90
自引率
0.00%
发文量
18
审稿时长
12 weeks
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