层数对用新型剑麻织物增强的水泥基复合材料拉伸和挠曲行为的影响

Textiles Pub Date : 2024-02-01 DOI:10.3390/textiles4010004
Adilson Brito de Arruda Filho, P. L. Lima, Ricardo Fernandes Carvalho, Otávio da Fonseca Martins Gomes, R. D. T. Filho
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引用次数: 0

摘要

在水泥基加固材料中使用织物,扩大了其在各类建筑构件中的应用。此外,使用可再生的植物纤维织物还有助于减少建筑业对环境的影响。然而,由于植物纤维和织物的特性各不相同,因此有必要对其进行预先研究,以确认其作为加固材料的有效性。在这项研究中,生产了一种新型剑麻织物,并将其用作水泥基复合材料的加固材料。所生产的剑麻纤维、纱线和织物在直接拉力下进行了测试。五种复合材料是通过手工层压制造的,加固层从一层到五层不等,并进行了直接拉伸和弯曲测试。结果表明,纤维呈现脆性破坏,而纱线和织物在达到最大拉力后会逐渐失去强度。所有复合材料都表现出应变硬化和挠曲硬化行为,在断裂前会出现多次开裂以及拉力和变形的增加。随着层数的增加,复合材料的机械性能也有所改善,四层和五层的复合材料表现出不同的行为,在出现多重开裂后刚度增加,机械性能更好,可用作建筑构件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Number of Layers on Tensile and Flexural Behavior of Cementitious Composites Reinforced with a New Sisal Fabric
The use of fabric in reinforcing cement-based materials expands their applications for various types of construction elements. Additionally, employing renewable sources of plant-based fabrics contributes to reducing the environmental impact of the construction industry. However, the variability in the properties of plant fibers and fabrics necessitates prior studies to confirm their effectiveness as reinforcement materials. In this study, a new sisal fabric was produced and utilized as reinforcement in cement-based matrix composites. The sisal fibers, yarns, and fabrics produced were tested under direct tension. Five composites were manufactured by manual lamination, with reinforcement ranging from one to five layers, and were subjected to direct tension and flexural testing. The results indicate that, while the fiber shows brittle failure, the yarn and fabric exhibit a gradual loss of strength after reaching the maximum tension. All composites display strain-hardening and deflection-hardening behavior, with multiple cracking and an increase in tension and deformation before rupture. The mechanical properties exhibited improvement with an increase in the number of layers, and composites with four and five layers displayed distinct behavior, demonstrating increased stiffness after the occurrence of multiple cracking and a better mechanical performance, qualifying them for use as a construction element.
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