基于当地材料和椰枣废料的新型隔音纤维增强轻质混凝土

IF 1.4 Q2 ENGINEERING, MULTIDISCIPLINARY
Aissa Boucedra, M. Bédérina
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引用次数: 0

摘要

目的研究一种新型棕榈植物纤维(来自植物废料)增强生态轻量化混凝土,并将其应用于局部建筑的隔热和隔音。枣椰树植物纤维具有对化学反应敏感性低、成本低、可获得性高等特点。因此,新获得的轻质混凝土可能会引起人们的极大兴趣,因为它似乎能够在技术上、经济上和生态上为当地的建筑问题提供良好的解决方案。设计/方法/方法:实验项目的重点是通过研究纤维长度(10,20,30和40mm)及其质量百分比(0.5%,1%,1.5%和2%)对复合材料力学和声学性能的影响,来开发棕榈纤维增强混凝土的组成。主要测量参数有抗压强度、抗折强度、吸声系数、降噪系数等。这些测试也被密度和吸水率的测量以及微观结构分析所证实。为了充分了解材料的行为,在光学显微镜下进行了可视化和扫描电镜分析。将植物纤维添加到混凝土中,可以配制出一种具有有趣性能的新型轻质混凝土。椰枣纤维的加入大大降低了混凝土的密度,从而降低了它的机械强度,特别是在压缩方面。可接受的抗压强度值是可能的,根据纤维含量,而更好的值已获得挠曲。另一方面,获得了良好的声学性能:根据纤维的含量和长度,吸声系数和NRC有了相当大的提高。即使纤维的加入也能改善其流变性能,但仅限于短纤维。创意/价值近几十年来,许多研究都试图寻找更可持续和环保的建筑材料。因此,这项工作旨在研究使用椰枣树废料作为混凝土纤维的可能性,而不是传统使用的纤维。虽然已经对棕榈植物纤维对混凝土的机械/物理性能的影响进行了许多研究,但既没有关于这类混凝土的配方也没有关于其声学性能的资料。的确,由于原材料的稀缺和能源的过度消耗,植物纤维作为天然可再生资源的发展趋势非常诱人。因此,这是一个主要的废物回收和当地材料回收项目。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A new acoustically insulating fiber-reinforced lightweight concrete based on local materials and date palm waste
Purpose This paper aims to characterize and develop a new ecological lightweight concrete reinforced by addition of palm plant fibers (from vegetal waste) to be used in the thermal and acoustical insulation of local constructions. The date palm plant fibers are characterized by their low sensitivity to chemical reactions, low cost and large availability in local regions. Therefore, the newly obtained lightweight concrete may suggest a great interest, as it seems to be able to achieve good solutions for local construction problems, technically, economically and ecologically. Design/methodology/approach The experimental program focused on developing the composition of palm-fiber-reinforced concrete, by studying the effect of the length of the fibers (10, 20, 30 and 40 mm) and their mass percentage (0.5%, 1%, 1.5% and 2%), on the mechanical and acoustical properties of the composite. The main measured parameters were the compressive strength and flexural strength, sound absorption coefficient, noise reduction coefficient (NRC), etc. These tests were also borne out by the measure of density and water absorption, as well as microstructure analyses. To fully appreciate the behavior of the material, visualizations under optical microscope and scanning electron microscope analyses were carried out. Findings The addition of plant fibers to concrete made it possible to formulate a new lightweight concrete having interesting properties. The addition of date palm fibers significantly decreased the density of the concrete and consequently reduced its mechanical strength, particularly in compression. Acceptable compressive strength values were possible, according to the fibers content, while better values have been obtained in flexion. On the other hand, good acoustical performances were obtained: a considerable increase in the sound absorption coefficient and the NRC was recorded, according to the content and length of fibers. Even the rheological behavior has been improved with the addition of fibers, but with short fibers only. Originality/value Over the recent decades, many studies have attempted to search for more sustainable and environmentally friendly building materials. Therefore, this work aims to study the possibility of using waste from date palm trees as fibers in concrete instead of the conventionally used fibers. Although many researches have already been conducted on the effect of palm plant fibers on the mechanical/physical properties of concrete, no information is available neither on the formulation of this type of concrete nor on its acoustical properties. Indeed, due to the scarcity of raw materials and the excessive consumption of energy, the trend of plant fibers as resources, which are natural and renewable, is very attractive. It is therefore a major recycling project of waste and recovery of local materials.
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来源期刊
World Journal of Engineering
World Journal of Engineering ENGINEERING, MULTIDISCIPLINARY-
CiteScore
4.20
自引率
10.50%
发文量
78
期刊介绍: The main focus of the World Journal of Engineering (WJE) is on, but not limited to; Civil Engineering, Material and Mechanical Engineering, Electrical and Electronic Engineering, Geotechnical and Mining Engineering, Nanoengineering and Nanoscience The journal bridges the gap between materials science and materials engineering, and between nano-engineering and nano-science. A distinguished editorial board assists the Editor-in-Chief, Professor Sun. All papers undergo a double-blind peer review process. For a full list of the journal''s esteemed review board, please see below.
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