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Study of the influence of sorted polymeric optical fibers (POFs) in samples of a light-transmitting cement-based material (LTCM)

机译:研究分选的聚合物光纤(POF)对透光水泥基材料(LTCM)样品的影响

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The aim of the present work is to investigate the mechanical behavior of LTCM (light-transmitting cement-based material) reinforced with POF (polymeric optical fiber) at three fiber contents (2%, 3.5%, and 5%) arranged in an orderly manner and compare it to the reference specimen free of fiber (%0). To prepare the LTCM samples, Portland cement, fine aggregate, additive (silica fume), superplasticizer, POFs and water were used. The laboratory tests were determined in order to verify if the material addressed is suitable enough for commercial and structural (more than 30 MPa) application. The results obtained showed that the worsening of the mechanical properties of the composites and low grip of the fiber/matrix can be attributed to the parallel arrangement of the fibers and to the POF extremely smooth surface, thus compromising the grip. The POF did not effectively serve as a structural reinforcement and the SEM analysis revealed many gaps in this transition area, making it a porous and brittle material. The light transmittance increased with the fiber content increasing up to 5% POF. Considering the evaluating indicators, the present solution (for composites with up to 5% POF) is still suitable enough for commercial and structural application. In general LTCM is becoming a high-tech material that provides excellent performance and a wide range of applications but requires competent design and execution. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本工作的目的是研究在三种纤维含量(2%,3.5%和5%)有序排列的情况下,用POF(聚合物光纤)增强的LTCM(透光水泥基材料)的力学性能。并将其与不含纤维(%0)的参考样品进行比较。为了制备LTCM样品,使用了硅酸盐水泥,细骨料,添加剂(硅粉),高效减水剂,POF和水。确定实验室测试是为了验证所处理的材料是否足够适合商业和结构(超过30 MPa)应用。所得结果表明,复合材料的机械性能变差和纤维/基体的低抓地力可归因于纤维的平行排列和POF极其光滑的表面,从而损害了抓地力。 POF不能有效地用作结构增强材料,SEM分析显示该过渡区域存在许多缝隙,使其成为多孔且易碎的材料。透光率随纤维含量的增加而增加,最高POF可达5%。考虑到评估指标,本解决方案(对于POF含量高达5%的复合材料)仍然足够适合商业和结构应用。总的来说,LTCM正在成为一种高科技材料,它具有出色的性能和广泛的应用范围,但需要出色的设计和执行能力。 (C)2017 Elsevier Ltd.保留所有权利。

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